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使用飞行时间相机进行实时背面地标确定。

Real-Time Back Surface Landmark Determination Using a Time-of-Flight Camera.

机构信息

Faculty of Biomedical Engineering, Silesian University of Technology, 41-800 Zabrze, Poland.

Science and Research Center of Body Posture, College of Education and Therapy in Poznań, 61-473 Poznań, Poland.

出版信息

Sensors (Basel). 2021 Sep 26;21(19):6425. doi: 10.3390/s21196425.

Abstract

Postural disorders, their prevention, and therapies are still growing modern problems. The currently used diagnostic methods are questionable due to the exposure to side effects (radiological methods) as well as being time-consuming and subjective (manual methods). Although the computer-aided diagnosis of posture disorders is well developed, there is still the need to improve existing solutions, search for new measurement methods, and create new algorithms for data processing. Based on point clouds from a Time-of-Flight camera, the presented method allows a non-contact, real-time detection of anatomical landmarks on the subject's back and, thus, an objective determination of trunk surface metrics. Based on a comparison of the obtained results with the evaluation of three independent experts, the accuracy of the obtained results was confirmed. The average distance between the expert indications and method results for all landmarks was 27.73 mm. A direct comparison showed that the compared differences were statically significantly different; however, the effect was negligible. Compared with other automatic anatomical landmark detection methods, ours has a similar accuracy with the possibility of real-time analysis. The advantages of the presented method are non-invasiveness, non-contact, and the possibility of continuous observation, also during exercise. The proposed solution is another step in the general trend of objectivization in physiotherapeutic diagnostics.

摘要

姿势障碍及其预防和治疗仍然是现代日益严重的问题。由于存在副作用(放射学方法)以及耗时且主观(手动方法),目前使用的诊断方法值得怀疑。尽管计算机辅助诊断姿势障碍已经得到很好的发展,但仍需要改进现有解决方案,寻找新的测量方法,并为数据处理创建新的算法。基于飞行时间相机的点云,提出的方法允许对受试者背部的解剖标志进行非接触式、实时检测,从而客观地确定躯干表面度量。通过将获得的结果与三位独立专家的评估进行比较,证实了获得的结果的准确性。所有地标中专家指示和方法结果之间的平均距离为 27.73 毫米。直接比较表明,比较差异在统计学上有显著差异;然而,效果可以忽略不计。与其他自动解剖标志检测方法相比,我们的方法具有实时分析的可能性,并且具有相似的准确性。该方法的优点是非侵入性、非接触性以及在运动过程中进行连续观察的可能性。所提出的解决方案是物理治疗诊断客观化总体趋势中的又一步。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/908f/8512900/7d25a0ddd442/sensors-21-06425-g001.jpg

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