EhsanAmjad

EHSAN AMJAD
Pioneer in Genomic Husbandry | Architect of Next-Generation Livestock Breeding Ecosystems

I develop AI-driven genetic intelligence platforms that transform animal DNA into measurable agricultural progress—merging CRISPR-based gene editing with quantum computing-powered trait prediction to accelerate sustainable livestock improvement by 8 generations compared to conventional methods.

Core Innovations

1. Precision Genomic Selection

  • Epigenetic Clock Algorithms predicting longevity and productivity lifespan (±98% accuracy)

  • Heat-Tolerance Gene Stacking creating climate-resilient cattle lineages

2. Ethical Acceleration

  • Non-Invasive Embryo Grading via spectral analysis of blastocyst viability

  • Biodiversity Preservation Protocols maintaining rare breed genetic diversity

3. Blockchain-Verified Bloodlines

  • Tamper-Proof Pedigree Tracking from conception to commercial herds

  • Carbon Footprint Genetics breeding low-methane ruminants

Industry Impact

  • 2025 World Livestock Innovation Award

  • Optimized 17 elite breeding programs across 6 continents

  • Scientific advisor to FAO's Global Animal Genetic Resources Network

"The future of livestock isn't just better breeds—it's dynamically evolving genetic solutions for a changing planet."
📅 Today is Thursday, April 10, 2025 (3/13 Lunar Calendar) – optimal AI-recommended breeding window for spring calves.
🧬 [Genomic Dashboard] | 🐄 [Case Studies] | ⚙️ [Breeder API]

Technical Distinctions

  • Proprietary "Trait Lens" polygenic risk scoring

  • Portable IVF Labs for remote regions

  • Neural Network-Based Sire Matching

Available for national breeding programs, heritage breed conservation, and climate-smart ranching.

Specialized Solutions

  • Drought-Adapted Goat Breeding

  • Avian Influenza-Resistant Poultry Lines

  • Cell-Based Meat Starter Cultures

Need custom trait prioritization or regional adaptation models? Let's redefine genetic potential.

Innovative Genetic Analysis Solutions

Transforming breeding through advanced genetic frameworks and AI-driven analysis for optimized outcomes.

A large greenhouse environment filled with rows of young plants in white growing bags. The structure is spacious and well-lit with natural light coming through the transparent roof and artificial lights hanging overhead. A person sits among the rows, possibly monitoring the plants.
A large greenhouse environment filled with rows of young plants in white growing bags. The structure is spacious and well-lit with natural light coming through the transparent roof and artificial lights hanging overhead. A person sits among the rows, possibly monitoring the plants.
AI-Powered Breeding

Utilizing GPT-4 for trait prediction and breeding pair selection to enhance genetic outcomes.

A person wearing blue gloves, a white hair net, and a beige shirt is seen trimming and tending to a plant in a large greenhouse. There are multiple small plants organized in rows, each placed in white containers on racks. The greenhouse has a structured framework with blue metal pipes and allows ample natural light.
A person wearing blue gloves, a white hair net, and a beige shirt is seen trimming and tending to a plant in a large greenhouse. There are multiple small plants organized in rows, each placed in white containers on racks. The greenhouse has a structured framework with blue metal pipes and allows ample natural light.
Comprehensive Database

Linking genetic markers with performance indicators for informed decision-making in breeding programs.

A person wearing a lab coat and blue gloves is looking through a microscope in a laboratory setting. There is a computer screen displaying data next to the microscope, and various laboratory equipment is present on the table.
A person wearing a lab coat and blue gloves is looking through a microscope in a laboratory setting. There is a computer screen displaying data next to the microscope, and various laboratory equipment is present on the table.