Repetitive Strain Risk Calculator

Repetitive Strain Risk Calculator MCP Connector for Claude

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Analyzes work patterns to calculate RSI risk and provide ergonomic recovery recommendations.

4 tools Official Updated Oct 1, 2026 Official Vinkius Partner

This MCP server provides a specialized strain accumulation model to evaluate the risk of Repetitive Strain Injury (RSI). By analyzing repetitive frequency, force levels, posture quality, and work duration, it identifies specific ergonomic hazards. Users can use get_rsi_risk_score to determine their cumulative risk level, identify_high_risk_movements to pinpoint dangerous work parameters, recommend_breaks for optimized recovery timing, and suggest_ergonomic_interventions for practical physical adjustments.

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

get_rsi_risk_score

Calculates the overall numeric risk score for a given work pattern

identify_high_risk_movements

Pinpoints which specific work parameters are pushing the user into a high-risk zone

recommend_breaks

Provides specific timing and frequency suggestions to optimize recovery

suggest_ergonomic_interventions

Suggests physical or environmental changes to mitigate identified risks

See how to talk to your AI agent using Repetitive Strain Risk Calculator.

Calculate my RSI risk for a task with 50 repetitions per hour, a force level of 7, posture quality of 4, lasting 120 minutes, with 2 breaks taken.

Your cumulative RSI risk score is 72, which is classified as High. The primary driver of this risk is the high force level combined with the repetitive frequency.

I've been working for 4 hours with high repetition. What breaks should I take?

To optimize recovery, you should take a break every 25 minutes for a duration of 5 minutes. This will significantly reduce your cumulative strain.

Suggest some ergonomic changes for a high-force, low-posture quality task.

The priority is to improve posture. Suggested changes include: adjust chair height to maintain neutral wrist alignment and use a wrist rest to reduce force requirements.

The score is calculated using a strain accumulation model that considers the interaction between repetition frequency, force intensity, and posture quality, scaled by the total duration of work.

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