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开发一种新的低成本计算机视觉系统用于人类步态分析:案例研究。

Development of a new low-cost computer vision system for human gait analysis: A case study.

机构信息

Facultad de Ingeniería, Universidad Autónoma de San Luis Potosí, San Luis Potosi, México.

出版信息

Proc Inst Mech Eng H. 2023 May;237(5):628-641. doi: 10.1177/09544119231163634. Epub 2023 Mar 23.

Abstract

Today, human gait analysis is commonly used for clinical diagnosis, rehabilitation and performance improvement in sports. However, although previous research works in the literature address the use of motion capture systems by means of optoelectronic sensors, Inertial Measurement Units (IMUs) and depth cameras, few of them discuss their conception, guidelines and algorithms for measuring and calculating gait metrics. Moreover, commercially available motion capture systems, although efficient, are cost restrictive for most of the low-income institutions. In this research work, a new computer vision-based system (CVS) for gait analysis is developed and proposed. The aim is to close the gap found in the literature about the design and development of such systems by providing the requirements, considerations, algorithms and methodologies used to develop a gait analysis system with acceptable precision and accuracy, and at low cost. For this purpose, a linear computer vision method based on the non-homogeneous solution of the calibration matrix was used. The spatio-temporal and angular gait parameters were implemented in the proposed system, and compared with those reported in the literature. The denoising of the spatial gait trajectories and the strategies to detect gait events, are also presented and discussed. The results have shown that the proposed system is satisfactory for human gait analysis in terms of precision, computational performance and low cost.

摘要

如今,人类步态分析在临床医学诊断、康复和运动表现提升方面得到了广泛应用。然而,尽管文献中的先前研究工作涉及使用光电传感器、惯性测量单元(IMU)和深度相机的运动捕捉系统,但很少有研究讨论其测量和计算步态指标的概念、指南和算法。此外,虽然商用的运动捕捉系统效率高,但对于大多数低收入机构来说,其成本限制较大。在这项研究工作中,开发并提出了一种新的基于计算机视觉的系统(CVS)用于步态分析。目的是通过提供开发具有可接受精度和准确性且成本低廉的步态分析系统所需的要求、考虑因素、算法和方法,来弥补文献中关于此类系统设计和开发的空白。为此,使用了基于标定矩阵非齐次解的线性计算机视觉方法。所提出的系统实现了时空和角度步态参数,并与文献中报道的参数进行了比较。还介绍和讨论了空间步态轨迹的去噪和检测步态事件的策略。结果表明,在所提出的系统中,从精度、计算性能和低成本的角度来看,该系统非常适用于人类步态分析。

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