Joint Range of Motion Calculator

Joint Range of Motion Calculator MCP Connector for Claude

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Quantifies mobility deficits by comparing measured joint movement against normative clinical data.

4 tools Official Updated Oct 1, 2026 Official Vinkius Partner

This MCP server provides clinical decision support for assessing joint mobility. It allows AI agents to retrieve standardized movement ranges using get_normative_reference and calculate specific clinical metrics like deficit and functional impact via calculate_rom_metrics. Clinicians can use evaluate_mobility_status to get a complete assessment of a patient's movement, or get_joint_capabilities to identify valid movement directions for a specific joint. It bridges the gap between raw physical measurements and actionable clinical insights.

mobilityphysical-therapyromclinicalorthopedics

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

evaluate_mobility_status

Provides a summary assessment of a single measurement

get_joint_capabilities

Lists all valid movements and directions available for a specific joint

get_normative_reference

Retrieves the expected normal ROM for a specific joint and movement profile

calculate_rom_metrics

Computes the comparison between measured movement and normative standards

See how to talk to your AI agent using Joint Range of Motion Calculator.

Assess the mobility status for a 45-year-old male with a shoulder flexion angle of 140 degrees.

The shoulder flexion for a 45-year-old male is within the normal range. The measured 140 degrees is sufficient compared to the normative standard.

What are the valid movement directions for the knee joint?

The valid movement directions for the knee are flexion and extension.

Calculate the ROM metrics for a knee extension of 160 degrees when the normal angle is 170 degrees and the target is 175 degrees.

The patient has achieved 94.1% of the normal range, with a deficit of 10 degrees. The functional impact is classified as Minimal.

The tool uses `get_normative_reference` to fetch expected angles based on the patient's age, gender, and the specific joint and direction being measured.

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