A system for automated acquisition of digital flexion using a 3-D camera and custom gantry.

IF 0.9 Q4 REHABILITATION
Hand Therapy Pub Date : 2022-09-01 Epub Date: 2022-06-22 DOI:10.1177/17589983221110916
David M Brogan, Aws Anaz, Marjorie Skubic, Christopher J Dy, Jay Bridgeman
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引用次数: 0

Abstract

Introduction: Automated measurement of digital range of motion (ROM) may improve the accuracy of reporting and increase clinical efficiency. We hypothesize that a 3-D camera on a custom gantry will produce ROM measurements similar to those obtained with a manual goniometer.

Methods: A 3-D camera mounted on a custom gantry, was mechanized to rotate 200° around a platform. The video was processed to segment each digit and calculate joint angles in people with no history of any hand conditions or surgery to validate the system. A second-generation prototype was then assessed in people with different hand conditions. Metacarpophalangeal (MCP) and proximal interphalangeal (PIP) joint flexion were measured repeatedly with a goniometer and the automated system. The average difference between manual and automatic measurements was calculated along with intraclass correlation coefficients (ICC).

Results: In the initial validation, 1,488 manual and 1,488 automated joint measurements were obtained and the measurement algorithm was refined. In people with hand conditions, 688 manual and 688 automated joint measurements were compared. Average acquisition time was 7 s per hand, with an additional 2-3 s required for data processing. ICC between manual and automated data in the clinical study ranged from 0.65 to 0.85 for the MCP joints, and 0.22 to 0.66 for PIP joints.

Discussion: The automated system resulted in rapid data acquisition, with reliability varying by type of joint and location. It has the potential to improve efficiency in the collection of physical exam findings. Further developments of the system are needed to measure thumb and distal phalangeal motions.

一种使用3D相机和自定义龙门架自动采集数字屈曲的系统。
引言:数字运动范围(ROM)的自动测量可以提高报告的准确性并提高临床效率。我们假设,定制龙门架上的3D相机将产生与手动测角仪类似的ROM测量结果。方法:将一台安装在定制龙门架上的三维摄像机机械化,绕平台旋转200°。视频被处理为分割每个手指,并计算没有任何手部疾病或手术史的人的关节角度,以验证该系统。第二代原型随后在不同手部状况的人身上进行了评估。用角度计和自动化系统反复测量指骨间关节(MCP)和指骨间近端关节(PIP)的屈曲。计算手动和自动测量之间的平均差异以及组内相关系数(ICC)。结果:在初始验证中,获得了1488个手动和1488个自动联合测量,并改进了测量算法。在有手部疾病的人中,688个手动关节测量和688个自动关节测量进行了比较。平均采集时间为每只手7秒,数据处理需要额外的2-3秒。临床研究中手动和自动数据之间的ICC范围为MCP关节的0.65至0.85,PIP关节的0.22至0.66。讨论:自动化系统实现了快速的数据采集,可靠性因接头类型和位置而异。它有可能提高体检结果收集的效率。该系统的进一步发展需要测量拇指和远节指骨的运动。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Hand Therapy
Hand Therapy REHABILITATION-
CiteScore
1.60
自引率
10.00%
发文量
13
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