Department of Computer Engineering, Bilecik Seyh Edebali University, 11210 Bilecik, Turkey.
Department of Computer Engineering, Bilecik Seyh Edebali University, 11210 Bilecik, Turkey.
Med Eng Phys. 2020 Feb;76:20-31. doi: 10.1016/j.medengphy.2019.10.017. Epub 2019 Dec 25.
Telerehabilitation systems provide some advantages against the classic rehabilitation methods. The ability of the shoulders depends on active motion range of them to do activities in daily life and to do sports. To evaluate the shoulder motions, range of motion (ROM) measurement is a basic method. Clinical goniometer and digital goniometer are the most commonly used measurement tools. However, these measurement tools have some deficiencies and difficulties. In this paper, we consider a Kinect One Sensor (Kinect V2) based measurement system for shoulder motions as an alternative method. The aim of this study is to examine the reliability and validity analyzes of the proposed shoulder measurement system. Three systems were used to evaluate validity of the Kinect V2 to measure shoulder motions: Kinect V2 based system, clinical goniometer and digital goniometer. One expert physical therapist measured shoulder abduction, flexion, external rotation, internal rotation and extension ROM values using a clinical goniometer and a digital goniometer in 40 healthy volunteers (22 males, 18 females, and 19-33 years old). All poses for each shoulder motion were captured with the Kinect V2 based system again and the ROM values were calculated. These procedures were carried out with all of the volunteer participants in three repetitions. In reliability for Kinect V2 based shoulder motion measurement system, we used the intraclass correlation coefficients (ICC), standard error of the measure (SEM), minimal detectable change (MDC). The validity test includes the 95% limits of agreement (LOA) and mean difference between the Kinect V2 based system and the both of the goniometer systems for measuring shoulder motions. The high ICC values show that the Kinect V2 based shoulder motion measurement system has very good intra-rater reliability for abduction, flexion, external rotation, internal rotation shoulder poses. For extension pose, it has good reliability result according to the ICC value. The validity analysis gives good results for all shoulder poses except internal rotation between Kinect V2 and clinical/digital goniometer. As a result, Kinect V2 based measurement system is a reliable and valid alternative telerehabilitation tool for shoulder motions.
远程康复系统提供了一些优于传统康复方法的优势。肩部的能力取决于它们进行日常生活活动和运动的主动运动范围。为了评估肩部运动,运动范围(ROM)测量是一种基本方法。临床量角器和数字量角器是最常用的测量工具。然而,这些测量工具存在一些缺陷和困难。在本文中,我们考虑了一种基于 Kinect One Sensor(Kinect V2)的肩部运动测量系统作为替代方法。本研究的目的是检验所提出的肩部测量系统的可靠性和有效性分析。为了验证 Kinect V2 测量肩部运动的有效性,我们使用了三种系统:基于 Kinect V2 的系统、临床量角器和数字量角器。一位专家理疗师使用临床量角器和数字量角器在 40 名健康志愿者(22 名男性,18 名女性,年龄 19-33 岁)中测量肩部外展、前屈、外旋、内旋和伸展 ROM 值。使用 Kinect V2 基于系统再次捕获每个肩部运动的所有姿势,并计算 ROM 值。这些程序在所有志愿者参与者中进行了三次重复。在 Kinect V2 基于肩部运动测量系统的可靠性方面,我们使用了组内相关系数(ICC)、测量标准误差(SEM)、最小可检测变化(MDC)。有效性测试包括 95%的一致性界限(LOA)和 Kinect V2 基于系统与两个量角器系统测量肩部运动的平均差值。高 ICC 值表明,Kinect V2 基于肩部运动测量系统对于外展、前屈、外旋、内旋肩部姿势具有很好的内部评分者可靠性。对于伸展姿势,根据 ICC 值,它具有良好的可靠性结果。除了内旋外,Kinect V2 与临床/数字量角器之间的所有肩部姿势的有效性分析结果都很好。因此,Kinect V2 基于测量系统是一种可靠且有效的肩部运动远程康复工具替代方案。