Wearable intelligent joint range of motion measurement device for forensic clinical identification

By designing an intelligent measurement device that includes wearable fixation components, posture sensing units, and data processing units, the problems of large errors, cumbersome operation, and difficulty in identifying disguises in joint range of motion measurements in forensic clinical identification have been solved. This has enabled efficient and accurate disability assessment and data traceability, thereby improving the objectivity and standardization of the assessment results.

CN122074965APending Publication Date: 2026-05-26马家鹏 +1
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
马家鹏
Filing Date
2026-03-30
Publication Date
2026-05-26

AI Technical Summary

Technical Problem

Current forensic clinical identification methods for measuring joint range of motion suffer from problems such as large human error, cumbersome operation, difficulty in identifying disguised behavior, and lack of data traceability. Existing wearable devices fail to meet forensic identification standards.

Method used

An intelligent measurement device was designed, comprising a wearable fixation component, an attitude sensing unit, a data processing unit, a storage and interaction unit, and a power supply unit. It adopts a dual-group nine-axis inertial measurement module and has functions for initial calibration, real-time calculation, and disability standard matching, enabling automatic judgment and data recording.

Benefits of technology

It enables objective and accurate measurement of joint range of motion, reduces human error, improves assessment efficiency and credibility, and has the functions of automatic matching of disability standards and data traceability.

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Abstract

This invention discloses a wearable intelligent joint range of motion measurement device for forensic clinical identification, belonging to the field of forensic identification equipment technology. The device includes a wearable fixation component, a posture sensing unit, a data processing unit, a storage and interaction unit, and a power supply unit. It synchronously collects limb posture data from both sides of the joint using dual inertial sensors, calculates high-precision joint range of motion, and automatically matches the data using a built-in disability assessment standard library to output a preliminary suggestion for the disability level. This invention offers objective measurement, convenient wear, and traceable data, specifically addressing the problems of large errors, low efficiency, and susceptibility to subjective interference in traditional forensic manual measurements. It is suitable for limb injury disability assessment and possesses strong practicality and professionalism.
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