Swine Growth Performance Model

Swine Growth Performance Model MCP Connector for Claude

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Predict swine growth metrics, production costs, and optimal market weight using NRC equations.

4 tools Official Updated Oct 1, 2026 Official Vinkius Partner

This MCP server provides advanced biological and economic modeling for swine production. By applying National Research Council (NRC) standards, it allows AI agents to calculate critical performance indicators such as average daily gain and feed conversion ratio using predict_growth_metrics. Users can estimate financial requirements with estimate_production_costs, identify the most profitable selling point via find_optimal_market_weight, and evaluate how heat stress affects development through simulate_environmental_impact. It is designed to optimize market timing and maximize profitability in swine operations.

swinelivestocknrcgrowth-modelingagtech

4 tools expose this connector's capabilities to your AI agent.

estimate_production_costs

Calculates the financial cost associated with reaching a specific target weight

find_optimal_market_weight

Determines the most profitable weight to sell the animal based on economic variables

predict_growth_metrics

Calculates primary physiological performance indicators for a specific growth window

simulate_environmental_impact

Evaluates how different thermal conditions will shift the performance timeline

See how to talk to your AI agent using Swine Growth Performance Model.

Calculate the growth metrics for a 20kg barrow with a target weight of 100kg, using a high-performance genotype and a diet with 3.2 energy density and 0.8 lysine.

The predicted average daily gain is 0.85 kg/day, the feed conversion ratio is 2.4, and it will take 94 days to reach the target weight.

What is the optimal market weight for a gilt starting at 25kg, assuming a feed cost of $0.40/kg and a market price of $2.10/kg?

The optimal market weight is 112 kg, with an expected profit of $145.50.

How will an ambient temperature of 35 degrees Celsius affect the growth of a 50kg boar?

The high temperature triggers thermal stress, resulting in a 15% reduction in growth speed.

The `simulate_environmental_impact` tool evaluates thermal conditions. If temperatures exceed the thermoneutral zone, the model applies a reduction factor to growth rates and increases the feed conversion ratio.

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