#AnimalWelfare – Vprint Infotech https://www.vprintinfotech.com Magazine Tue, 07 Jul 2026 10:31:19 +0000 en-US hourly 1 https://wordpress.org/?v=6.9.4 https://www.vprintinfotech.com/wp-content/uploads/2023/08/logo-feb-150x150.jpg #AnimalWelfare – Vprint Infotech https://www.vprintinfotech.com 32 32 Live Bird Handling: Protecting Value from Farm to Processing https://www.vprintinfotech.com/live-bird-handling-protecting-value-from-farm-to-processing/ Tue, 07 Jul 2026 10:31:19 +0000 https://www.vprintinfotech.com/?p=7779

The poultry industry invests significant resources into genetics, hatching and breeding to ensure high-quality birds enter the supply chain. How do you preserve that value through catching, transport, lairage, and processing – without compromising welfare, quality, or operational efficiency? Live bird handling has become one of the most critical control points in modern poultry processing. It directly influences product quality, compliance, yield, and overall plant performance.


Efficient, low-stress live bird handling is essential for the performance and success of any poultry processing operation.

The Challenge Behind Live Bird Handling
In today’s poultry industry, processors operate under increasing pressure from multiple directions.
Higher processing speeds demand more from every part of the system. At the same time, labour challenges make manual handling more difficult to sustain. Stricter animal welfare regulations continue to raise expectations, while sustainability targets require reductions in energy use, emissions, and waste. On top of this, biosecurity risks must be tightly controlled to protect both product and plant integrity.

These external pressures translate into very real operational challenges:
– Avoiding dead-on-arrivals and bird injuries
– Ensuring high standards of animal welfare throughout catching, transport, lairage, and reception
– Maintaining consistent product quality
– Ensuring steady line feeding without disruption
– Reducing reliance on manual labour
– Managing variability in farm and transport conditions

Even small inefficiencies in live bird handling can cascade through the entire production process, affecting both cost and output.


Automation in the reception area ensures smooth, efficient handling while reducing reliance on manual labour.

Why It Matters More Than Ever
Live birds represent a high-value input that has already required significant investment before they reach the plant. Any loss in quality during handling translates directly into lost yield and reduced profitability.

Poor handling conditions during catching, transport, or reception can lead to stress, injury, and inconsistent product quality. These issues do not remain isolated – they impact downstream efficiency, outcome quality, and customer expectations.

In contrast, well-designed handling systems help maintain control over a process that has traditionally been variable and labour-intensive.


Transport equipment should be robust and allow for a safe journey from farm to plant.

The Role of Modern Live Bird Handling Systems
To address the above-mentioned challenges, the industry is increasingly moving toward integrated, automated, and welfare-focused handling systems.
Modern solutions are designed to manage the full journey from farm to shackling in a controlled and consistent way, reducing variability and improving outcomes across multiple dimensions.

Key capabilities include:
Gentle and Controlled Handling
Reducing stress and physical impact during catching, transport, and unloading helps preserve both welfare and product quality.

Automated Processes Where It Counts
Automation in key areas such as catching, unloading, stacking, or equipment washing reduces labour dependency while improving consistency and throughput.

Stable Line Feeding
Reception systems are designed to ensure a continuous and controlled flow of birds to the shackling area, even at high processing speeds.

Environmental Control
Proper airflow during transport and lairage helps prevent heat stress and supports animal welfare under varying climate conditions.

Hygiene and Biosecurity
Washable and disinfection-ready systems help reduce pathogen risks and maintain strict hygiene standards between flocks.

Scalability and Flexibility
Modular system designs allow processors to expand capacity or adapt layouts as production needs evolve, without major operational disruption.


Highly effective washing equipment eliminates the risk of inconsistencies associated with manual cleaning, ensuring reliable and repeatable hygiene standards.

Key Factors in System Design
Selecting the right live bird handling approach depends heavily on operational context. Farm layout, infrastructure, and access conditions all influence system design.
Large-scale operations require high-capacity systems capable of handling volume efficiently, while maintaining gentle handling principles. In contrast, labour availability may determine the level of automation required.

Climate conditions also play an important role. Systems must support adequate airflow and temperature control to prevent heat stress during transport and lairage.
Finally, biosecurity requirements and cleaning protocols are increasingly important, requiring equipment designed for effective washing and contamination control.


A well-designed live bird handling system takes conditions across the farm, transport, and reception areas into account to ensure best performance

A System-Level Approach to Performance
The most effective live bird handling strategies treat the entire process as one integrated system rather than isolated steps.
From farm loading to plant reception, every stage must work together to maintain flow, protect bird welfare, and support consistent processing.
When this is achieved, processors benefit from:
– Improved animal welfare outcomes
– Higher and more consistent product quality
– Reduced dead-on-arrivals and injuries
– Better operational efficiency and throughput stability
– Lower labour dependency
– Stronger compliance with regulatory standards
–   Greater long-term scalability

Choosing the Right Provider
To meet these diverse needs of a global market, BAADER offers crate handling and module/drawer solutions in a variety of modular layout options. These solutions are designed to adapt to specific operational requirements, ensuring flexibility and efficiency in handling processes.

Our live bird handling specialists provide processing audits to effectively analyse current and future challenges, helping processors design reception layouts that meet market demands. With over 80 years of proven expertise in handling live birds, we offer solutions supported by both global and local services to ensure equipment operates smoothly and efficiently.

Visit: https://poultry.baader.com/live-bird-handling to learn more about the BAADER live bird handling solutions

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PIONEERING ANIMAL HEALTH THROUGH PHYTOGENIC INNOVATION https://www.vprintinfotech.com/pioneering-animal-health-through-phytogenic-innovation/ Fri, 05 Jun 2026 13:55:32 +0000 https://www.vprintinfotech.com/?p=7696
PIONEERING ANIMAL HEALTH THROUGH PHYTOGENIC INNOVATION

France Based IDENA’s Complex Phytogenic Animal Nutrition Products Through Feed Development has led to Higher Productivity and Better Animal Health – Ricky Thaper (www.rickythaper.com)

Improving livestock health has been recognized by producers as an important sustainability effort which improves efficiency and reduces productivity losses in the animal husbandry sector. The United Nations Food and Agriculture Organisation (FAO) has urged nations to integrate animal health into their national climate commitments, calling it “vital for sustainable livestock production.” The roadmap recognized the importance of livestock to 1.7 billion farmers worldwide and offered proven pathways for addressing its climate footprint including better genetics, feed, and animal health. An UN report calculated the effects of different steps to address livestock emission by stating that animal productivity increase would reduce emissions 20%. It also stated that feed improvements by 12%, better animal health by 10%, improved genetics by 8% and methane reducing feed additives by 5%.

This growing recognition of the value of animal health and related technologies has the potential to boost livestock sustainability and decrease its carbon footprint. This will require adoption of strong biosecurity protocols, improved feed and use of good additives, better breeding practices and adoption of new digital technologies. Keeping this vision in mind, several companies have been working towards boosting animal health and productivity through development of innovative products keeping into consideration the unique needs of countries across the world.

Since its creation in 1995, France based global major in animal nutrition IDENA group has developed products keeping into account the nutritional needs of poultry, dairy, and piggery. The key focus of the IDENA is to introduce innovative additives and pre-mixes which boost the poultry and livestock feed and increase performances of poultry and livestock in the farms.



At IDENA, head-quartered in SAUTRON, Pays de la Loire, France, there are experts who are passionate about developing products which promote animal growth and welfare. IDENA’s technical and sales teams, often in the field, offers tailor-made advice to improve the formulation of products and optimise their effectiveness depending on the needs of the customer. The company has succeeded in establishing its fundamentals and convictions in the animal nutrition market, developing them and continuing to build on them. In 2001, the IDENA production plant in Pontchâteau, France was set up.

The mission of the company is to market natural alternatives to conventional additives in order to reduce the use of antibiotics and preserve their effectiveness (antibiotic resistance). These alternatives are made up of phytogenic, bioactive and active ingredients derived from lactic fermentations through IDENA’s sister company STI BIOTECHNOLOGIE which has developed a unique range of Postbiotics.

Following a specific inactivation process, STI Biotechnologie manufactures, among other products, a postbiotic solution, available in powder and liquid form. METALAC promotes digestive comfort, enhances animal welfare, and improves the animals’ immune status.

The company has numerous scientific publications: S. Jansseune’s thesis, published last June, expanded knowledge of METALAC through in vitro and in vivo experimental trials, as well as on the composition of metabolites synthesized during bacterial fermentation. The postbiotic contributes to the formation of a beneficial bacterial biofilm to protect intestinal villus cells, thereby strengthening the intestinal barrier. This research is continuing with a postdoctoral fellowship in collaboration with the University of Rennes, supervised by Monogastric Product Manager Maeva JEGOU.

Under the leadership of Director Christophe TANGUY, the Asia-Middle East region is managed by David CHEREL, based in China.

IDENA has also developed a complete range of nutritional specialities to improve the feed efficiency of animals fed in organic farming systems and these products are all approved by official organic farming certification bodies.

IDENA has a range of poultry products, among them; FORCIX PY (Prevention of the risk associated with Eimeria together with Necrotic Enteritis), FORKEY LS (Prevention of the risk associated with Histomonas in Turkeys), EVOPERF (Digestive comfort and performance), PONTIPLUS (Supporting hen productivity and longevity by maintaining laying rate and improving egg quality and breeders’ eggs hatchability) and IDAFIX+ (a large spectrum powerful mycotoxin binder). All these poultry products are based on the results of extensive scientific research, particularly into the action of plant extracts and essential oils. The issues studied relate mainly to make better use of the nutrients supplied and managing the risks of parasites and bacteria amongst the poultry birds. In poultry, IDENA focus is on gut health, mineral balance, feed efficiency, and resilience of birds under commercial conditions. IDENA solutions combine R&D, field validation, and practical formulation expertise to ensure both technical efficiency and economic viability. The nutrition experts in the company have developed a range of products designed to improve the feed efficiency of ruminants, focussing on critical components – protein, energy and fibre. The company also focussed on pig production for creating formulation through feed recipes and increase digestive efficiency of the animals.

To design animal feeding in different ways and to improve technical and economic performance while respecting animal welfare and the environment, IDENA develops quality feed products for the various sectors of the livestock economy- feed manufacturers, premix manufacturers, integrators, hatcheries, dairies, farms and breeders. The products are developed by consultants specialised by species. The IDENA group is made up of departments covering areas such as research and development, animal nutrition engineering and the manufacture of premixes and innovative specialities. This enables each entity to focus fully on its core business, whilst benefiting from the Group’s stability, experience and long term vision.

110 people are currently cooperating at IDENA, with Mr. Renaud Domitile as CEO and Mr. Massoud Aoun as General Manager. The commercial team is led by Mr. Franck Vaillant, Commercial Director, with 6 Regional Export Managers to cover the 5 continents.

Team of experts from the group also carry out on-farm audits to better adapt the formulation and use of additives to the context of each livestock farm. Six people are offering technical support for poultry: Mrs. Anne MAHIEU, Nutritionist-Head of Poultry Department, Dr. Jean-Marie WATIER- Vet Poultry Specialist, Ms. Amandine CANIN-Poultry Nutritionist Engineer, Mr. Khalil AOUAD, Poultry Nutritionist Engineer, and Mr. Bohdan BODNAR, Poultry Nutritionist Engineer, and also Mr. Renaud Domitile, CEO which is recognized worldwide for his nutrition expertise.

The 2000s saw the internationalisation of the Group’s activities. The company offers its services to hundreds of customers, both feed manufacturers and players in the animal sector, spread across France to more than 60 countries spanning five continents. It has succeeded in establishing its fundamentals and convictions in the animal nutrition market, developing them and continuing to build on them.

The Group has a robust central structure, which ensures strategic consistency, supports the development of its subsidiaries and fosters synergies between areas of expertise. The company’s annual revenue was approximately €50 million in 2025

With the future collaboration with Distributors in India, IDENA group has great plans to expand its presence in India, which has the world’s biggest livestock population said Mr. Renaud Domitile, CEO. The India poultry market is driven by strong demand for affordable animal protein and rapid industry structuring. However, it remains a highly competitive and price-sensitive market, where solutions must combine technical performance with clear economic return added Mr. Khalil AOUAD, Poultry Nutritionist Engineer.

Mr. Franck Vaillant, Commercial Director said through IDENA product innovation, India’s poultry and livestock sector will be immensely benefited to better feed and increase in productivity because of improvement in animal health. IDENA’s strength compared to most of its competitors lies not only in the fact that the company offers a range of innovative phytogenic products designed to improve feed efficiency and livestock performance, but that this offering is backed by extensive expertise in animal nutrition, feed formulation and livestock management, which IDENA’s teams make available to their partner clients.

For further information about IDENA poultry, dairy and piggery products, kindly visit IDENA Website: http://www.idena.fr/

 

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Balancing Air Quality in Poultry Houses: Tackling Ammonia and Humidity for Health and Productivity https://www.vprintinfotech.com/balancing-air-quality-in-poultry-houses-tackling-ammonia-and-humidity-for-health-and-productivity/ Sun, 09 Nov 2025 06:22:50 +0000 https://www.vprintinfotech.com/?p=7326

Balancing Air Quality in Poultry Houses: Tackling Ammonia and Humidity for Health and Productivity

Dr. Pawar Rutik Namdev1 (MVSc Scholar), Dr. Shipra Tiwari1 (MVSc Scholar),
Dr. Mahendra Kumar Patel1 (Ph.D Scholar)
1College of Veterinary Science and Animal Husbandry, DUVASU Mathura (281001), India

 

Abstract
The environment within poultry houses plays a decisive role in the overall health, performance, and welfare of birds. Among various factors, the concentration of ammonia (NH₃) and the level of relative humidity (RH) are the most critical. Ammonia, released from the microbial breakdown of waste, and excessive humidity, which influences litter moisture, often work together to create poor air quality. This review highlights how these two factors are produced, their combined impact on broilers and layers, and outlines practical approaches for monitoring and management to maintain profitability and bird well-being.

1. Introduction
For poultry farmers, achieving optimal productivity requires not just good feed and genetics, but also maintaining a favorable environment inside the house. Air quality, ventilation, and litter condition all directly affect flock health. Ammonia gas and humidity levels are particularly important, as they can significantly influence bird growth, egg production, immune strength, and overall welfare. Excessive ammonia harms the respiratory tract, reduces feed intake, and lowers growth efficiency, while uncontrolled humidity leads to wet litter, higher ammonia emissions, and disease outbreaks. To ensure healthy flocks, ammonia should ideally be kept below 20–25 ppm and RH within 50–70%.

2. How Ammonia and Humidity Build Up
2.1 Generation of Ammonia
Ammonia is created naturally when uric acid in droppings is decomposed by bacteria. The process is intensified under warm, moist, and alkaline conditions. The type of litter material, stocking density, feed composition (especially protein levels), and frequency of manure removal all influence ammonia levels. Houses with poor cleaning routines or high moisture accumulation often experience higher NH₃ concentrations.

2.2 Role of Humidity
Humidity directly controls litter moisture content. High RH slows the evaporation of water from bedding, resulting in wet litter that promotes microbial activity and ammonia release. Conversely, very low RH increases dust particles in the air, which irritates the birds’ airways. Thus, moisture management is closely tied to controlling ammonia levels.

3. Impacts on Bird Health and Physiology
3.1 Respiratory Effects
Ammonia acts as a strong irritant to the respiratory tract. Continuous exposure damages the trachea and air sacs, reducing the ability of cilia to filter pathogens. Birds exposed to more than 20–25 ppm are more prone to respiratory diseases such as Newcastle, bronchitis, and Mycoplasma infections. Vaccination responses also tend to decline.

3.2 Eye and Skin Irritation
Chronic exposure to ammonia causes conjunctivitis, watery eyes, and corneal damage. High RH contributes to wet litter that leads to footpad dermatitis, hock burns, and breast blisters—all of which compromise welfare and reduce carcass quality at processing.

3.3 Growth and Feed Efficiency
High levels of ammonia reduce appetite, slow weight gain, and impair feed conversion. Even a small increase in feed conversion ratio (FCR) significantly raises production costs, especially in large flocks. Performance losses become severe when ammonia concentrations exceed 50 ppm for prolonged periods.

3.4 Immunity
Birds raised in poor air quality often show weaker immune responses. Prolonged exposure to ammonia not only stresses birds but also reduces antibody production after vaccination, leaving them vulnerable to disease outbreaks.

3.5 Egg Production
In layer flocks, poor litter conditions and elevated ammonia cause stress, leading to reduced laying rates, smaller egg size, and poor shell quality. Mortality may also rise due to an increased risk of secondary infections.

4. The Combined Impact of Ammonia and Humidity
Although ammonia and humidity can each harm poultry, their combination is especially damaging. High RH makes litter wetter, which in turn boosts ammonia emissions. Humid air also traps ammonia at bird level, ensuring birds inhale more of it. Together, these conditions encourage respiratory infections, coccidiosis outbreaks, poor weight gain, higher mortality, and overall production losses.

5. Monitoring Levels
5.1 Threshold Values
Ammonia: Should remain below 20–25 ppm (ideally closer to 10 ppm). Birds show signs of irritation even at levels humans may not detect by smell.

Relative Humidity: Best maintained between 50–70%. RH above 75% promotes wet litter, while RH below 40% leads to dust and dehydration.

5.2 Measurement Tools
Ammonia: Can be monitored using portable gas detectors, color tubes, or continuous electronic sensors.
Humidity: Inexpensive hygrometers placed at bird height provide reliable readings and are often integrated into automatic ventilation systems.

6. Strategies for Control
6.1 Ventilation
Proper ventilation ensures air exchange, dilutes gases, and removes excess moisture.

In cold weather: minimum ventilation prevents humidity build-up without chilling the birds. fans and circulation systems increase air movement and reduce heat stress.

6.2 Litter Management
Maintaining dry litter is essential. Turning litter, replacing wet spots, using absorbent bedding materials, and preventing drinker leaks are key practices. Chemical litter amendments such as alum or sodium bisulfate can reduce pH, minimizing ammonia release.

6.3 Nutrition
Adjusting feed formulations to match amino acid requirements reduces nitrogen excretion. Enzyme supplements and probiotics may also improve digestion and reduce ammonia in manure.

6.4 Housing Design
Well-insulated poultry houses with good drainage and properly installed nipple drinkers minimize litter moisture. Preventing condensation on walls and ceilings also helps keep humidity under control.

6.5 Advanced Methods
Technologies like air scrubbers, biofilters, or controlled ozone applications are being tested for large commercial units. Automated environmental control systems that integrate NH₃ and RH sensors with fans and heaters are becoming increasingly popular.

7. Economic Importance
Poor air quality silently eats into farm profits. Lower feed efficiency, reduced weight gain, carcass downgrades, increased mortality, and higher veterinary costs all add up to significant economic losses. Studies show that ammonia-related performance drops can cost large poultry complexes thousands of dollars weekly. Investing in better litter management, ventilation, and nutritional adjustments often proves cost-effective in the long run.

8. Evidence and Case Studies
Field surveys often reveal ammonia exceeding safe levels during winter when ventilation is minimized, leading to higher respiratory issues and welfare concerns. Controlled trials consistently show that birds exposed to even moderate ammonia (20–30 ppm) suffer from lower growth rates, poorer immune response, and more lesions compared to those raised under optimal conditions. Interventions such as litter acidifiers, improved diet formulations, and enhanced ventilation schedules have been shown to significantly reduce ammonia emissions and improve performance.

9. Recommendations for Farmers
– Check RH daily: maintain between 50–70%.
– Monitor ammonia regularly: aim for <20 ppm.
– Fix water leaks immediately to avoid wet litter.
– Adjust ventilation by season to balance temperature, RH, and air quality.
– Work with a nutritionist to optimize protein levels in diets.
– Use litter amendments wisely to reduce ammonia emissions.

10. Future Outlook
The integration of smart sensors and artificial intelligence into poultry housing systems may soon allow farmers to predict ammonia build-up and adjust ventilation automatically. Further research is needed to quantify the long-term welfare and production benefits of advanced technologies and to make them affordable for small- and medium-scale farmers.

11. Conclusion
Ammonia and humidity are closely linked environmental challenges in poultry houses. Both negatively affect bird health, welfare, and productivity when not controlled. Together, they magnify each other’s harmful effects, resulting in economic losses and compromised flock performance. Regular monitoring, proactive litter and ventilation management, balanced nutrition, and modern environmental control tools are essential for maintaining a healthy environment. Addressing these issues not only supports profitability but also improves animal welfare, ensuring sustainable poultry production.

 

 

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Empowering Poultry Farming in India with Smart Technologies and Sustainable Practices https://www.vprintinfotech.com/empowering-poultry-farming-in-india-with-smart-technologies-and-sustainable-practices/ Fri, 12 Sep 2025 13:57:58 +0000 https://www.vprintinfotech.com/?p=7236 Empowering Poultry Farming in India with Smart Technologies and Sustainable Practices

 

Dr. Pawar Rutik Namdev1 (MVSc Scholar), Dr. Shipra Tiwari1 (MVSc Scholar)
1Department of Livestock Products Technology,
College of Veterinary Science and Animal Husbandry, DUVASU Mathura (281001), India

 

Introduction
India’s poultry farming sector is one of the fastest-growing segments of agriculture, transitioning from small-scale backyard flocks to an organized, technology-driven industry. Today, India ranks as the third-largest producer of eggs and fifth-largest producer of broiler meat globally, contributing significantly to nutritional security, rural livelihoods, and export earnings. The adoption of innovative technologies and sustainable practices is the driving force behind this transformation. The convergence of automation, biotechnology, artificial intelligence (AI), Internet of Things (IoT), and renewable energy solutions is redefining efficiency, profitability, and animal welfare in Indian poultry production.

1. Automation and Environmental Control Systems
Modern poultry farms increasingly rely on automatic feeders, nipple drinkers, robotic cleaning systems, and conveyor-based egg collection. Climate-controlled housing systems use tunnel ventilation, cooling pads, and heating systems to maintain optimal growth conditions year-round. IoT-enabled climate controllers adjust temperature, humidity, and lighting schedules automatically. Case example: A large poultry farm in Tamil Nadu reported a 15% improvement in feed conversion ratio (FCR) and 12% lower mortality after adopting IoT-based environmental monitoring.

2. AI and IoT for Health and Productivity Monitoring
AI-powered surveillance systems analyze movement patterns, vocalization changes, and feeding behavior to detect early disease signs. IoT sensors track feed and water intake, body weight, and environmental parameters in real time, alerting farmers via smartphone apps. Global Insight: In Japan, smart poultry houses with AI-based monitoring achieve over 95% accuracy in predicting disease outbreaks 48–72 hours before visible symptoms appear — a model now being adapted in Indian research centers.

3. Sustainable Feeding Solutions and Waste Utilization
Feed constitutes 70% of production costs, making feed innovation a critical area. Innovations include:
– Black Soldier Fly larvae meal — high protein, produced from organic waste.
– Algal biomass — boosts omega-3 content in meat and eggs.
– Enzyme-enriched feeds — improve nutrient absorption.
– Crop residue-based feed formulations — reduce costs and waste.
Impact: Lower costs, enhanced nutritional quality, and improved environmental sustainability.

4. Vertical Integration and Supply Chain Efficiency
Leading companies like Suguna Foods, Venky’s, and Godrej Tyson operate fully integrated supply chains — controlling breeding, feed milling, hatcheries, grow-out farms, processing, cold chain logistics, and retail sales.This ensures biosecurity, quality consistency, and traceability while supporting contract farmers with inputs and technical guidance.

5. Biotechnology and Genetic Advancements
Advanced breeding programs use CRISPR-Cas9, marker-assisted selection, and QTL mapping to produce birds with higher productivity, disease resistance, and adaptability to India’s climate. Example: Dual-purpose breeds like Vanaraja and Gramapriya — developed by ICAR — thrive in rural, low-input systems while producing 180–200 eggs annually alongside quality meat.

6. Antibiotic-Free Production and Biosecurity Innovations
The shift toward antibiotic-free poultry production is gaining momentum through:
– Farm-specific vaccination programs.
– Probiotic and phytogenic additives like oregano oil and neem extracts.
– Strict biosecurity protocols — footbaths, controlled farm access, and vehicle disinfection.

7. Blockchain, RFID, and Digital Traceability
Blockchain-backed farm-to-fork tracking ensures that consumers can verify a product’s origin, quality, and safety. RFID-tagged batches enable instant recalls in case of contamination.

8. Renewable Energy and Eco-Friendly Practices
Sustainable poultry farms are implementing:
– Solar panels to power fans, lights, and heating.
– Biogas digesters to convert manure into usable energy.
– Rainwater harvesting and water recycling for operations.
Case Example: A Maharashtra farm reduced electricity costs by 40% after installing a rooftop solar plant and biogas unit.

9. Government and Institutional Support
Government initiatives such as the National Livestock Mission (NLM), Poultry Venture Capital Fund, and ICAR-led AICRP on Poultry Breeding have accelerated technology adoption. Subsidies for equipment like solar panels, hatchery automation, and cold chain infrastructure are making modernization accessible to small and medium-scale farmers.Training programs by Krishi Vigyan Kendras (KVKs) and state veterinary universities ensure that farmers can adopt and maintain new technologies effectively.

10. Global Best Practices and India’s Adoption
Internationally, countries like the Netherlands, the US, and Brazil have long embraced precision poultry farming — a data-driven approach that integrates AI, robotics, and real-time analytics. India is adapting these practices to local conditions and cost constraints, ensuring scalability for farms of all sizes.

11. Future Trends and Opportunities
The next wave of innovations in Indian poultry farming may include:
– Robotic farm assistants for cleaning, egg collection, and surveillance.
– Wearable health trackers for breeder birds.
– Fully automated AI-driven hatcheries for precision chick management.
– Advanced climate-resilient poultry housing to withstand extreme weather events.
– 3D imaging and AI for carcass yield optimization in processing plants.

12. Regional Success Stories: Innovation at the Grassroots
While large corporates drive vertical integration, many small and medium poultry farmers are embracing low-cost tech solutions with significant results.

– Andhra Pradesh: Farmers use low-energy tunnel ventilation systems designed by local engineering colleges, reducing summer mortality by 20%.

– Kerala: Co-operative societies invest in solar-powered incubators, enabling village-level chick production and reducing dependency on urban hatcheries.

– Punjab: Backyard poultry programs using Vanaraja and Gramapriya breeds help women farmers earn ₹15,000–₹20,000 annually from egg sales alone.
These success stories highlight that technology adoption is scalable — from backyard to industrial scale.

13. Start-Up Innovations Driving Change
India’s agri-tech start-ups are entering poultry farming with AI-driven farm management apps, e-commerce feed platforms, and precision health tools.
– Eggoz – Uses IoT-based farm monitoring for premium “antibiotic-free” eggs with QR-coded traceability.
– PoultryMon – Offers sensor-based farm health and productivity analytics.
– Kheyti – Introduces low-cost modular poultry shelters for climate-resilient small-scale farming.
Start-ups are bridging the gap between traditional farming and high-end technology, making advanced tools affordable and accessible.

14. Export Opportunities for Indian Poultry Products
India’s poultry exports (mainly hatching eggs, table eggs, and frozen chicken) have strong demand in Middle Eastern, African, and Asian markets.
Innovations in cold chain logistics, biosecurity compliance, and product quality assurance are enabling Indian producers to compete internationally.
Key Factors Boosting Export Potential:
– Adoption of Global G.A.P. certification for biosecurity and welfare.
– Processing innovations for value-added products like pre-cooked chicken.
– Government-backed export incentives under APEDA (Agricultural and Processed Food Products Export Development Authority).

15. Challenges and Pathways to Overcome Them
Despite progress, the sector faces challenges:
Challenges
– Feed cost volatility due to climate-driven crop fluctuations.
– Biosecurity threats from avian influenza outbreaks.
– Gaps in cold chain and logistics for rural production clusters.
– Limited financing options for small-scale modernization.
Solutions
– Development of alternative protein sources (insects, algae, single-cell proteins).
– Regional disease surveillance networks linked via AI dashboards.
– Public-private investment in cold chain and processing hubs.
– Microfinance and government-backed credit schemes for smallholder poultry farmers.

16. The Road Ahead: Towards Smart, Sustainable, and Inclusive Poultry Farming
The future of Indian poultry farming lies in integrating technology with inclusivity — ensuring that innovations reach small and marginal farmers alongside industrial players. With AI-driven analytics, IoT-enabled health monitoring, climate-resilient infrastructure, and renewable energy adoption, India can position itself as a global leader in sustainable poultry production.
If the sector continues on this trajectory, poultry farming in India could become:· Economically stronger – by reducing costs and increasing market access. · Environmentally responsible – through renewable energy and waste recycling.
– Socially empowering – by creating livelihoods, especially for rural women.

Conclusion
India’s poultry farming sector is undergoing a historic transformation, shifting from traditional backyard systems to a highly organized, technology-enabled, and market-oriented industry. Through automation, AI, IoT-based monitoring, sustainable feed innovations, genetic advancements, blockchain-enabled traceability, and renewable energy integration, productivity is rising while environmental impact is being reduced. Government support, institutional research, and the rise of agri-tech start-ups have accelerated technology adoption not just among large integrated players but also among small and medium-scale farmers. Regional success stories prove that innovation is scalable and adaptable to local needs.

The sector’s future lies in smart, sustainable, and inclusive growth — where advanced tools are accessible to all farmers, where poultry products meet the highest global safety and quality standards, and where exports grow alongside domestic food security. By embracing innovation while addressing challenges like feed cost volatility, biosecurity risks, and logistics gaps, India is poised to become a global leader in sustainable poultry production, delivering economic growth, environmental responsibility, and social empowerment in equal measure.

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Successful tools for a holistic approach towards gut health https://www.vprintinfotech.com/successful-tools-for-a-holistic-approach-towards-gut-health/ Mon, 11 Aug 2025 07:57:28 +0000 https://www.vprintinfotech.com/?p=7219 Successful tools for a holistic approach towards gut health

 

Lode Nollet, Global Product Manager Poultry Enzymes, Huvepharma

Nutritional strategies to support the production of high quality, low cost and safe animal products are a must nowadays. The relationships between health, nutrition, welfare, and environment need to be considered. In poultry production, increasing feed costs are imposing pressure on the profitability of the farmer, so nutritionists seek to reduce feed costs whilst maintaining animal performance and gut health. Several strategies, with tangible tools to support this, are discussed in this article.

 

CONTROLLING COCCIDIOSIS

Coccidiosis, caused by protozoan parasites of the genus Eimeria, is one of the most widespread and difficult to manage poultry diseases, resulting in considerable economic losses in the broiler industry. Insufficient or inadequate control of coccidiosis will result in gut health damage and provide a pathway for other pathogens to proliferate.

For instance, suboptimal coccidiosis control combined with a high amount of undigested protein will create an ideal situation for the proliferation of Clostridia spp. Birds suffering from clinical coccidiosis will show typical signs like diarrhoea, bloody droppings, increased mortality, decreased feed intake and impaired performance.

Inadequate control of coccidiosis leads to impaired growth and feed conversion ratio, without the presence of evident clinical signs. This is subclinical coccidiosis.

Intensive methods of production of poultry favour the reproduction of Eimeria. Consequently, coccidiosis is a continuing problem requiring constant attention and, in the case of broilers, a need for continuous supplementation with anticoccidial drugs or coccidiosis vaccines, in addition to in-feed anticoccidials. Coccidiosis control combined with a good monitoring programme will be the base of any gut health management programme.

 

IMPROVING FEED DIGESTIBILITY

Improving digestibility of the feed can be achieved by selecting highly digestible feedstuffs. However, this will increase the feed price. The improvement of the digestibility of feed by using enzymes able to degrade Non-Starch Polysaccharides (the so-called NSPases) will not only lead to lowering the feed cost at formulation, but also exert a positive effect on the bird’s gut health.

 

The NSPases contain xylanase or xylanase-based enzymatic complexes, and their mode of action includes the hydrolysis of soluble arabinoxylans, which minimises intestinal viscosity, preventing the overgrowth of microflora and thereby reduces gut health disorders.

Together with the efficient reduction in viscosity, NSPases will also hydrolyse insoluble arabinoxylans. This action will unlock nutrients (mainly starch and proteins) which are trapped in the cell walls of the vegetable feed ingredients (the so called ‘cage effect’ of insoluble fibres).

 

Using the correct NSPase leads to improved digestibility of starch and protein. The latter is of particular importance as high levels of undigested protein in the (last) part of the intestine is a breeding ground for protein-loving pathogens like Clostridium spp, causing necrotic enteritis.

 

The breakdown of arabinoxylans by NSPase also yields arabino- oligosaccharides (AXOS) which are known to be fermented by the microflora in the lower part of the intestine to butyrate, which is a major energy source for villi regeneration allowing good gut health status.

Phytases have been shown not only to break down phytate to release phosphorus, but by doing so, to also destroy the anti-nutritional factor phytate.

This not only leads to a reduction of endogenous protein losses, but also liberates protein and amino acids which are complexed by phytate, enhancing their digestibility.

 

SUPPORTING THE MICROBIOTA

The relationship between a healthy gut and the animal’s microbiota is undeniable. As part of the holistic approach, the inclusion of probiotics in the nutritional programme offers a way of supporting gut health from a microbial perspective.

The mode of action of probiotics is usually multifactorial, including (but not limited to) the production of beneficial metabolites or the direct competition with unwanted bacteria. As a result, probiotics often help to balance the present microbiota and improve its robustness, supporting general gut health in the process. Probiotics can be incorporated into the feed or drinking water, depending on the strain and formulation used.

Although there are many commercial options available, the preferred product of choice should be based on a single unique strain, capable of forming spores and with a proven and researched mode of action. Such probiotics increase the ease of use, whilst ensuring product efficacy.

Good examples are B-Act®, containing viable spores of Bacillus licheniformis, based on Clostridium butyricum. Probiotics allow producers to support their animals’ gut health efficiently, setting them up for a successful production period from start to finish.

 

CONCLUSION

Gut health management is of paramount importance to the profitability of poultry farming. The strategy behind managing optimal gut health should contain a combination of the most important control tools on the market available today: an adequate and well thought-through coccidiosis control programme, combined with an NSP enzyme and a phytase, and topped off by a well-functioning probiotic.

To know more, please contact Huvepharma technical team

Huvepharma SEA (Pune) Pvt. Ltd.

42, ‘ Haridwar’, Road 2 A/B, Kalyani Nagar, Pune 411006 Customer Care Contact: +91 20 2665 4193

Email: salesindia@huvepharma.com Website: www.huvepharma.com

 

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Precision Mineral Nutrition: Elevating Poultry Health with Hydroxy Trace Minerals https://www.vprintinfotech.com/precision-mineral-nutrition-elevating-poultry-health-with-hydroxy-trace-minerals/ Mon, 11 Aug 2025 07:36:59 +0000 https://www.vprintinfotech.com/?p=7215 Precision Mineral Nutrition: Elevating Poultry Health with Hydroxy Trace Minerals

By : Dr Maloshrie Bora, Program Manager (Trace Minerals), Trouw Nutrition South Asia


Trace minerals such as zinc, copper, and manganese are fundamental to poultry health, acting as cofactors in vital biochemical pathways: skeletal development, immune defenses, antioxidative systems, enzyme functions, feathering, and reproductive performance. Yet, the typical composition of feed ingredients often falls short of modern poultry standards. That’s why precision mineral nutrition—providing the right mineral at the right time and in the right form—is essential to support optimal broiler growth, eggshell integrity in layers, and fertility in breeders.

While inorganic sources like sulfates and oxides have been staples for decades, they suffer from low bioavailability and reactiveness. These soluble compounds can prematurely release minerals, which then form insoluble complexes with phytate or binding agents in the gut, diminishing absorption and even degrading vitamins or enzymes in the premix. This not only reduces feed efficiency but also increases mineral excretion, raising environmental concerns. Organic (chelate) minerals improved this situation, but often at a premium cost and with variable potency. Enter the next generation: hydroxy trace minerals. Hydroxy trace minerals, like copper, zinc, and manganese hydroxychloride, represent the latest leap in mineral nutrition. Their crystalline, covalent structure is non-hygroscopic and non-reactive in feed and the upper gut. This structure allows slow, controlled release of minerals at the ideal intestinal absorption site, significantly improving bioavailability. They resist premature dissolution, ensuring minerals are released more slowly and absorbed where it matters most.

Research across poultry sectors consistently shows that hydroxy trace minerals outperform inorganic sources. Broilers fed hydroxy copper and zinc achieved 7–8% heavier carcasses and a noticeable boost in breast meat yield. In independent trials, hydroxy-supplemented flocks maintained or improved feed conversion ratios while using lower inclusion levels than sulfate-based diets . Moreover, in antibiotic-free or necrotic enteritis challenge models, hydroxy minerals reduced pathogen load and mortality, performing on par with ionophores. Layers also benefit: eggshell quality improves, feed remains stable longer (less oxidation), and FCR gains are consistent when inorganic Cu, Zn, Mn are replaced with hydroxy versions. Breeder flocks, too, see enhanced fertility and hatchability under precision hydroxy mineral regimes.
Beyond performance, hydroxy trace minerals contribute to gut integrity and immune defense. Broilers on hydroxy mineral diets exhibited reduced cecal enterobacteria and maintained tight junction integrity, translating into healthier birds and better carcass quality.

Discover IntelliBond®: Precision You Can Trust
Among hydroxy trace mineral solutions, Trouw Nutrition’s IntelliBond® stands out as a premium, thoroughly validated choice. Designed to optimize delivery of copper, zinc, and manganese, IntelliBond features:

– High bioavailability and potency : thanks to stable, covalent crystalline bonds that release minerals at the optimal intestinal site.

– Enhanced feed stability and nutrient preservation : safeguarding enzymes like phytase and vitamins from degradation in premixes

– Improved bird performance and economics : with independent studies showing better feed conversion, heavier carcasses, superior egg output, and healthier flocks under stress.

– Environmental sustainability : with reduced inclusion rates and lower mineral excretion promoting cleaner production.

– Unmatched versatility across poultry species and life stages : including broilers, layers, and breeders—even under challenging conditions like heat stress or compromised hygiene. This adaptability has been validated across multiple trials and production environments.

Proven Performance Across Poultry Types
A Spanish study comparing hydroxy vs. sulfate-fed broilers at nutritional levels found that those receiving hydroxy minerals (IntelliBond C and Z) achieved 7.4% higher live weights, 7.7% heavier carcasses, and 16.1% breast meat yield, versus 15.3% in the sulfate group. Another Trouw Nutrition joint trial with the University of New England demonstrated improved bone integrity (tibia breaking strength) and breast meat zinc content in broilers fed 100 ppm IntelliBond Zn, with gut integrity maintained. In antibiotic-free commercial conditions, hydroxy copper-chloride combined with organic acids matched or exceeded the performance gains of feed antibiotics while improving egg weight, mass, and feed efficiency in layer hens. These findings highlight the ability of IntelliBonds to deliver consistent productivity gains across broilers, layers, and breeders—even under stress or antibiotic-free regimes. Trouw Nutrition India has been pioneering mineral-precision feeding. “Trouw Talks” events in Karnal and Hyderabad, unveiled IntelliBond’s OptiSize® technology—highlighting uniform, stable crystals that protect premix integrity and animal performance. Trouw Nutrition’s new premix plant near Hyderabad supports local production of trace minerals, vitamins, and specialized premixes—readying India for advanced feed solutions. This investment and local research infrastructure underline Trouw Nutrition’s strong commitment to validating hydroxy mineral efficacy under Indian production conditions.

Why IntelliBond® Stands Out
Developed over two decades and backed by 200+ global trials, IntelliBond® hydroxy trace minerals ensure predictable delivery and dependable results through:
– Superior bioavailability due to controlled release and crystalline stability

– Enhanced feed stability, maintaining vitamins, enzymes, and reducing oxidation in premixes

– Animal performance gains, improving carcass weight, egg production, feed conversion, and profitability

– Gut health, by reducing pathogenic bacteria and preserving gut barrier integrity in broilers
– Environmental responsibility, lowering mineral excretion while supporting sustainability-focused operations

Precision Manufacturing and Traceability
Trouw Nutrition’s OptiSize® technology guarantees uniform particle size and non-hygroscopic behavior. Its low reactivity protects feed integrity, while rigorous traceability—from raw material origins to lot distribution—ensures feed safety and compliance.

Modern poultry production demands precision: the right trace mineral, in the right form, at the right level. Hydroxy trace minerals—especially IntelliBond®—deliver on that promise. Scientific evidence and Trouw Nutrition’s local investments prove that these superior minerals enhance productivity, welfare, and sustainability in broilers, layers, and breeders. By choosing IntelliBond®, nutritionists and producers gain a trusted, research-backed solution that fosters better performance, protects investments, and advances poultry industry goals in India and beyond.

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AI & AUTOMATION: BOOSTING INDIA’S POULTRY INDUSTRY GROWTH -RICKY THAPER (WWW.RICKYTHAPER.COM) https://www.vprintinfotech.com/ai-automation-boosting-indias-poultry-industry-growth-ricky-thaper-www-rickythaper-com/ Thu, 07 Aug 2025 14:14:24 +0000 https://www.vprintinfotech.com/?p=7188 AI & AUTOMATION: BOOSTING
INDIA’S POULTRY INDUSTRY GROWTH


-RICKY THAPER (WWW.RICKYTHAPER.COM)

Extensive Application of Artificial Intelligence (AI) & Automation Supported by the Industry to Sustain and Boost India’s Poultry Industry Growth while Ensuring Efficiency in Entire Value Chains

The Indian poultry market according to industry estimates was valued at USD 30.46 Billion in 2024. Due to rising demand for protein rich food, the sector is expected to witness a growth of 7% – 8% in the next decade. The value of the poultry industry is projected to rise to USD 66.37 Billion by 2034. Despite significant growth, the sector faces critical challenges such a volatility in feed supplies and prices, lack of availability of skilled manpower, threat of spread of diseases and rising cost of production. As the demand for poultry products continues to rise, poultry farmers in India are seeking ways to optimize their operations while addressing pressing challenges such as food security, environmental impact, and biosecurity. From precision farming and genetic advancements to automation and data analytics, these cutting-edge technologies are being increasingly used in the poultry industry.

Like most sectors of the economy, the role of Artificial Intelligence (AI) and automation are having a profound impact. In the poultry industry in India, Artificial Intelligence (AI) and automation is gradually transforming and improving efficiency, productivity, and animal welfare. Artificial Intelligence (AI) powered systems are being used for real-time monitoring of poultry houses, optimizing feed formulations, improving disease detection and streamlining logistics and supply chain management. Currently there are challenges in poultry operations in commercial layers, broilers and breeding farms. The key challenges are adverse climatic conditions, shortage and availability of skilled workers, emerging viral and bacterial diseases. Due to the age of the poultry sheds, prevalence of the diseases not eradicated while cleaning. Shortage of quality feed ingredients, use of medicines and ensuring availability of quality drinking water are also impacting the poultry industry. The quality of chicken meat is being impacted while lack of marketing facilities as well as price information is also adversely impacting the poultry sector.

The use of Artificial Intelligence (AI) based technologies to collect the data automatically and accurately in real-time helps in-depth analysis which could allow poultry farmers to immediately act upon optimizing the production.


For instance, predicting or projecting body weight for a given broiler line under local conditions. Under unsupervised learning, data collected would be categorized and trends detected without specific programing using resources from the cloud, huge amounts of data could be analysed to give advance notice of a particular outcome to the farmers. Data collected by using Artificial Intelligence (AI) tools would be the greatest resourceful tool in the hands of poultry farmers to harvest the maximum benefit of what they invested.

According to a report titled “Applications of Artificial Intelligence in Poultry Industry” by Livestock Farm Complex, Veterinary College and Research Institute, Salem, Tamil Nadu, a huge amount of data can be generated in the poultry industry by providing data analysis which can play a huge role in farm management practices. Big data stored and processed in cloud spaces can be utilized remotely by Artificial Intelligence (AI) to govern the machines or robotics to regulate parameters like humidity, temperature, light, etc., in the poultry farms. For instance, Robots with various biosensors connected to the internet, can be programmed to collect real-time data on parameters like temperature, humidity, ammonia levels inside the farm, subsequently this information can be processed and necessary measures could be initiated. The report stated that Artificial Intelligence (AI) helps to constantly monitor farm activities round the clock in real-time which would be an impossible task for humans to perform. Currently, in a large-scale poultry farm, several farm appliances and sensors are available to control the environmental temperature, humidity, and light, but the drawback with them is that they should be either manually operated or human supervision is a must to operate with. With the power of Artificial Intelligence (AI), various sensors connected with the internet, the farm appliances can be operated from elsewhere giving accurate maintenance of the farmhouse environment at ease.

Computer supervised machinery and robotics could reduce sufficiently human interaction with broiler birds, reducing the source or spread of infection. Usage of Artificial Intelligence (AI) could reduce the error rate to negligible and work round the clock which can improve the efficiency of farming leading to maximizing farmer’s remuneration. Recent advancements in machine technologies have significantly revolutionized daily activities in the poultry production system. Aimed at reducing the need of labour, while ensuring round the clock monitoring, and facilitating remote reporting of growth of poultry birds, these Artificial Intelligence (AI) tools are gradually being introduced. Some of the examples of application of Artificial Intelligence (AI) and automation include the implementation of specialized robots equipped with imaging sensors and machine learning capabilities, adeptly navigates through poultry house floors, collecting eggs on the floors and monitoring factors such as temperatures, gases and light levels in the poultry units. An innovative autonomous robot utilizes artificial intelligence and sensor technology to evaluate the surrounding environment, identify equipment malfunctions, monitor the health of poultry and perform tasks such as removing deceased birds and analyzing moisture levels in the litter. For instance, the robot stimulates bird activity, contributing to improving both feed conversion and average daily weight gain Robot also continuously scratches the litter reducing the humidity, eliminating caking and wet spots, reducing the incidence of aspergillosis, pododermatitis, foot burn and breast burn contributing to animal welfare. It can also monitor and map ammonia, temperature and humidity levels throughout the farm to keep in check. A robot by a company was designed to sanitize large poultry farms.

For disease management amongst the poultry birds, using Artificial Intelligence (AI) could be trained for detecting early heat stress in birds by using thermal imaging cameras or infra-red cameras. Likewise, diseased birds from the flock can be identified based on their movement, posture, and behaviour by image analysis collected from diseased birds and compared with the healthy ones. These tools would enhance disease control amongst the poultry birds.
Confederation of Indian Industries (CII) has also stressed on strengthening integrated disease surveillance and early warning systems for reports on bird flu incidents. Computer vision-based chicken monitoring systems have been developed to study bird feeding behaviour, stress behaviour, tracking bird movement, bird distribution within the farm, real-time monitoring, early detection of sick birds, identifying lameness and activity, predicting bird live weight based on 3D computer vision.

The application of Artificial Intelligence (AI) has a range of applications in the meat processing plant and egg packing industry. These tools have potential to address some key issues in processing plants, lack of real-time processing data and the limiting speed of human interventions. The use of artificial vision offers real-time yield, monitoring of high-value chicken parts, also combined with smart automation to optimize efficiencies. For processing plants, Artificial Intelligence (AI) allows higher processing speeds and accurate packing of premium value products, translating into more profits and lesser post-harvest contamination. While still, the majority of the farms are collecting data manually and then getting the data processed in computers. By 2050, it has been estimated that a poultry farm would be able to generate 4.1 million data points through various sensors and other related devices connected through the internet of things.

Going forward Artificial Intelligence (AI) assisted farming in various stages of poultry production from farm to consumers would help the Indian poultry sector immensely. There are tools to mitigate or to enhance a specific outcome of a farm produce with increased efficiency to tap farm maximum production potential. In the last few years, many companies have already focused on Artificial Intelligence (AI) related research and prototypes in collaboration with leading universities across the globe. Further use of newer Artificial Intelligence (AI) related technologies will augment poultry production providing affordable animal protein along with ensuring sustainable farm practices. Broiler chicken industry has become India’s most organised and vertically integrated agri-business. The broiler integrators have turned poultry farming from traditionally to a commercial enterprise even for the smallholders. Currently over 80% of poultry meat production comes from the organised sector. For ensuring and sustaining the growth for the sector, Industry has to work closely with poultry farmers to ensure that Artificial Intelligence (AI) tools are used to optimum level for bringing in efficiency in the entire value chain.

 

 

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INFAH National Seminar 2025-Focuses on Strengthening Animal Health through Public-Private Partnerships https://www.vprintinfotech.com/infah-national-seminar-2025-focuses-on-strengthening-animal-health-through-public-private-partnerships/ Tue, 06 May 2025 11:17:33 +0000 https://www.vprintinfotech.com/?p=7054

INFAH National Seminar 2025-Focuses on Strengthening Animal Health through Public-Private Partnerships

The Indian Federation of Animal Health Companies (INFAH) hosted its National Seminar 2025 at the India Habitat Centre, New Delhi, under the theme “Strengthening Animal Health and its Economics through Public-Private Partnership for Viksit Bharat” on March 20, 2025.

In the day-long event, over 100 delegates, including scientists, academicians, policymakers, regulators, and industry leaders, participated to deliberate on advancing veterinary health through Public Private Partnerships.

INAUGURAL SESSION
– Dr. Anup Kalra, Joint Secretary, INFAH, opened the session by highlighting the evolution of INFAH as a pivotal bridge between government, academia, and industry, and emphasized that collaborative models are crucial to realizing India’s Viksit Bharat goals.

– Dr. Shirish Nigam, President, INFAH, delivered the welcome address, reiterating that while business can drive progress 364 days a year, one day must be dedicated to industry introspection and united advocacy. He outlined INFAH’s commitment to policy reforms and presented key demands to the Ministry for regulatory clarity, faster product approvals, and technology enablement. He also acknowledged the support from current management committee comprising of Dr. Aman Syed (Vice President), Dr. Anup Kalra (Joint Secretary), Dr. Manoj Sood (Treasurer) as well as Executive members Dr. Vijay Makhija, Mr. Vijay Teng, Mr. Satish Pasrija, Dr. Arun Atrey, Mr. Gautam Chatterjee, Ms. Ashwini Deshpande, Dr. Vinayak Surve & Mr. Sushanta Dey.

KEYNOTE ADDRESSES
– Prof. Dr. S. P. Singh Baghel, Hon’ble Minister of State for Fisheries, Animal Husbandry & Dairying, served as the Chief Guest. He expressed his admiration for INFAH’s proactive role and emphasized that while laboratories are critical, outcomes must reach quickly, and that farmers and animals truly benefit. He called PPP models the “most successful approach” for rural transformation. Hon’ble minister also mentioned that animal husbandry is not a parallel economy; it should be considered a primary sector. The government aims to double farmers’ income, and livestock farming is crucial in achieving this goal.
– Ms. Alka Upadhyaya, IAS, Secretary, DAHD, delivered the Thematic Address, emphasizing a One Health approach and public-private convergence to tackle antimicrobial resistance (AMR), zoonotic threats, and animal welfare challenges. She shared how India is now 100% self-reliant in vaccine production for livestock sector. She even demonstrated recent studies which highlight the importance of deworming before vaccination to improve animal health.
She also highlighted the issue of mastitis and called for a nationwide program to address mastitis awareness and prevention. Madam Secretary acknowledged the critical role INFAH plays in shaping policies for the livestock sector and called for increased engagement between policymakers and industry stakeholders before formulating regulations.

 


– Dr. Abhijit Mitra, Animal Husbandry Commissioner, Ministry of Fisheries, Animal Husbandry & Dairying, highlighted the issue of Anti-Microbial Resistance (AMR) and shared how INFAH is helping by providing the data on the sale of Antimicrobials in animal health. He also reiterated the importance of government, industry, and research institutions working together to achieve self-reliance in veterinary medicine and improve animal health standards.

– Shri Abhay Mahajan, KVK, DRI, Chitrakoot, emphasized holistic rural development through ethnoveterinary practices, traditional knowledge, and youth empowerment. He mentioned the aim should be to expand the Chitrakoot model beyond MP & UP to other regions of the country.

– Dr. Raghavendra Bhatta,
DDG (Animal Science), ICAR emphasized on the livestock sector’s contribution to the economy and India’s goal to be PPR and rabies-free by 2030. He encouraged the industry to align with global export standards and leverage the growing market for preventive animal health solutions. He encouraged all participants to shift mindset from “PPP” to “Partnership for Prosperity”.

– Dr. Gauri Shankar, Deputy Drugs Controller, CDSCO, shared CDSCO’s progress with digital platforms like Sugam and underscored the need for mutual trust and accountability in regulatory pathways to foster innovation.

– Dr. Hirofumi Kugita, Representative for Asia-Pacific, World Organisation for Animal Health (WOAH), through his message highlighted international collaboration for disease surveillance and control. He emphasized aligning India’s veterinary health standards with global guidelines to improve trade access and animal welfare outcomes.

TECHNICAL SESSION HIGHLIGHTS

Session 1: Topic of “Public-Private Partnerships in Animal Health & Nutrition”
– Chairperson: Dr. Raghavendra Bhatta, DDG (Animal Science), ICAR
– Dr. P. K. Shukla, President, Indian Poultry Science Association,
– Dr. Praveen Malik, CEO, Agrinnovate India Ltd.
Keynotes of the Session:
– Identified key roadblocks in testing protocols and regulatory timelines and called poultry India’s “protein factory” and outlined innovations in feed efficiency, circular economy practices, and waste minimization to combat malnutrition. Advocated for better technology transfer, nutrition security, and disease surveillance.

Session 2: Topic of “Regulatory Framework for Animal Health Drugs & Biologicals”

– Chairperson: Dr. Praveen Malik, CEO, Agrinnovate India Ltd
– Dr. Arun Atrey, Managing Committee, INFAH
– Dr. Gauri Shankar, Deputy Drug Controller, CDSCO
-Dr. M. Kalaivani, Senior Scientific Officer, Indian Pharmacopoeia Commission
– Dr. Nitin Bhatia, Member of INFAH Subcommittee
– Dr. D.J. Kalita, Member of INFAH Subcommittee

Key notes of the session:

– Discussed IPC’s initiative to draft vaccine monographs and supported waivers based on global benchmarking.
– The session stressed that a unified, efficient framework will de-risk innovation and fast-track animal health solutions.

Session 3: Topic of “Imports & Exports of Veterinary Products”

– Chairperson: Dr. Indrajeet Singh, Vice Chancellor, Bihar Veterinary University
– Dr. Manoj Sood, Treasurer, INFAH
– Dr. Gagan Garg, Deputy Commissioner (Trade), DAHD
– Dr. Vijay Makhija. Managing Committee, INFAH
– Dr. Shyam Vane, Member of INFAH Subcommittee

Key notes of the session:
– Outlined regulatory inconsistencies and called for standardized classifications of feed additives, medical devices, and diagnostics as well as single window clearance.
– Emphasized the need for policy predictability, indigenous manufacturing, and incentives for global veterinary product exports.

Session 4: Topic of “Ayurveda & its Role in Animal Health”
– Dr. Mohan ji Saxena, shared his wisdom and thoughts on health & ayurveda. He highlighted how our economy is going to be affected due to animal health. He appealed everyone to think of not just being healthy but Health Index. He also encouraged for scientific validation of Ayurveda for mainstream application in animal care and emphasized the importance of hygiene, immunity and nutrition in animal care.

Session 5: Topic of “Navigating the Intellectual Property & Trade Regime”
– Dr. Manisha Shridhar, Regional Advisor (WHO SEARO), delivered a compelling address tracing the history of IP—from the Paris and Berne Conventions to TRIPS. She emphasized India’s opportunity to lead global innovation by bridging traditional knowledge with patent systems, and the value of technology transfer via models like the Bayh-Dole.

Way Forward
A comprehensive report compiling all session discussions and outcomes will be submitted to the Hon’ble Minister and DAHD. This will serve as a roadmap for targeted policy actions and collaborative innovations in animal health.

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