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使用Kinect摄像头评估上肢可达工作空间。

Evaluation of upper extremity reachable workspace using Kinect camera.

作者信息

Kurillo Gregorij, Chen Alic, Bajcsy Ruzena, Han Jay J

机构信息

Department of Electrical Engineering and Computer Science, University of California at Berkeley, Berkeley, CA, USA Department of Physical Medicine and Rehabilitation, University of California at Davis Medical Center, Sacramento, CA, USA.

Department of Mechanical Engineering, University of California at Berkeley, Berkeley, CA, USA.

出版信息

Technol Health Care. 2013;21(6):641-56. doi: 10.3233/THC-130764.

Abstract

BACKGROUND

In clinical evaluation of upper extremity, there is a lack of assessment methods that are quantitative, reliable, and informative of the overall functional capability of an individual.

OBJECTIVE

We present new methodology for the assessment of upper extremity impairments based on the concept of 3-dimensional reachable workspace using Microsoft Kinect.

METHODS

We quantify the reachable workspace by the relative surface area representing the portion of the unit hemi-sphere that is covered by the hand movement. We examine accuracy of joint positions, joint angles, and reachable workspace computation between the Kinect and motion capture system.

RESULTS

The results of our analysis in 10 healthy subjects showed that the accuracy of the joint positions was within 66.3 mm for our experimental protocol. We found that the dynamic angle measurements had relatively large deviations (between 9° to 28°). The acquired reachable workspace envelope showed high agreement between the two systems with high repeatability between trials (correlation coefficients between 0.86 and 0.93).

CONCLUSIONS

The findings indicate that the proposed Kinect-based 3D reachable workspace analysis provides sufficiently accurate and reliable results as compared to motion capture system. The proposed method could be promising for clinical evaluation of upper extremity in neurological or musculoskeletal conditions.

摘要

背景

在对上肢的临床评估中,缺乏能够定量、可靠且能反映个体整体功能能力的评估方法。

目的

我们基于使用微软Kinect的三维可及工作空间概念,提出一种评估上肢损伤的新方法。

方法

我们通过表示单位半球中被手部运动覆盖部分的相对表面积来量化可及工作空间。我们检查了Kinect与动作捕捉系统之间关节位置、关节角度和可及工作空间计算的准确性。

结果

我们对10名健康受试者的分析结果表明,在我们的实验方案中,关节位置的准确性在66.3毫米以内。我们发现动态角度测量存在相对较大的偏差(9°至2 °之间)。所获取的可及工作空间包络在两个系统之间显示出高度一致性,试验之间具有高度重复性(相关系数在0.86至0.93之间)。

结论

研究结果表明,与动作捕捉系统相比,所提出的基于Kinect的三维可及工作空间分析提供了足够准确和可靠的结果。所提出的方法对于神经或肌肉骨骼疾病中上肢的临床评估可能具有前景。

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