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运动应用中人体运动捕捉系统的准确性:最新综述。

Accuracy of human motion capture systems for sport applications; state-of-the-art review.

机构信息

a Department of Biomechanical Engineering , Delft University of Technology , Delft , The Netherlands.

出版信息

Eur J Sport Sci. 2018 Jul;18(6):806-819. doi: 10.1080/17461391.2018.1463397. Epub 2018 May 9.

Abstract

OBJECTIVE

Sport research often requires human motion capture of an athlete. It can, however, be labour-intensive and difficult to select the right system, while manufacturers report on specifications which are determined in set-ups that largely differ from sport research in terms of volume, environment and motion. The aim of this review is to assist researchers in the selection of a suitable motion capture system for their experimental set-up for sport applications. An open online platform is initiated, to support (sport)researchers in the selection of a system and to enable them to contribute and update the overview.

DESIGN

systematic review; Method: Electronic searches in Scopus, Web of Science and Google Scholar were performed, and the reference lists of the screened articles were scrutinised to determine human motion capture systems used in academically published studies on sport analysis.

RESULTS

An overview of 17 human motion capture systems is provided, reporting the general specifications given by the manufacturer (weight and size of the sensors, maximum capture volume, environmental feasibilities), and calibration specifications as determined in peer-reviewed studies. The accuracy of each system is plotted against the measurement range.

CONCLUSION

The overview and chart can assist researchers in the selection of a suitable measurement system. To increase the robustness of the database and to keep up with technological developments, we encourage researchers to perform an accuracy test prior to their experiment and to add to the chart and the system overview (online, open access).

摘要

目的

运动研究通常需要对运动员进行人体运动捕捉。然而,这可能是劳动密集型的,并且很难选择正确的系统,而制造商报告的规格是在与运动研究在体积、环境和运动方面大不相同的设置中确定的。本综述的目的是帮助研究人员为他们的运动应用实验设置选择合适的运动捕捉系统。启动了一个开放的在线平台,以支持(运动)研究人员选择系统,并使他们能够进行贡献和更新概述。

设计

系统评价;方法:在 Scopus、Web of Science 和 Google Scholar 上进行电子搜索,并仔细审查筛选文章的参考文献列表,以确定在学术发表的关于运动分析的研究中使用的人体运动捕捉系统。

结果

提供了 17 个人体运动捕捉系统的概述,报告了制造商提供的一般规格(传感器的重量和尺寸、最大捕获体积、环境可行性),以及在同行评议的研究中确定的校准规格。每个系统的精度都与测量范围相对应。

结论

该概述和图表可以帮助研究人员选择合适的测量系统。为了提高数据库的稳健性并跟上技术发展,我们鼓励研究人员在实验前进行准确性测试,并将其添加到图表和系统概述中(在线,开放获取)。

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