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The Validity, Reliability, and Sensitivity of a Smartphone-Based Seated Postural Control Assessment in Wheelchair Users: A Pilot Study

机译:智能手机的座椅姿势控制评估在轮椅用户中的有效性,可靠性和敏感性:试验研究

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摘要

Seated postural control is essential for wheelchair users to maintain proper position while performing activities of daily living. Clinical tests are commonly used to measure seated postural control, yet they are subjective and lack sensitivity. Lab-based measures are highly sensitive but are limited in scope and restricted to research settings. Establishing a valid, reliable, and accessible measurement tool of seated postural control is necessary for remote, objective assessments. Therefore, the purpose of this study was to examine the validity, reliability, and sensitivity of smartphone-based postural control assessments in wheelchair users. Eleven participants (age: 35.4 ± 17.9) completed two experimental visits 1-week apart consisting of three clinical tests: Trunk Control Test (TCT), Function in Sitting Test (FIST), and Tee-shirt Test, as well as, standardized instrumented balance tasks that manipulated vision (eyes open and closed), and trunk movement (functional reach and stability boundary). During these tasks, participants held a smartphone instrumented with a research-grade accelerometer to their chest. Maximum and root mean square (RMS) acceleration in the medial-lateral (ML) and anterior-posterior (AP) axes were derived. Participants were grouped into non-impaired and impaired postural groups based on FIST scores. Spearman rank-order correlations were conducted between the two devices' outcome measurements and between these measures and those of the clinical tests. Receiver operating characteristic (ROC) curves and the area under the curves (AUC) were determined to distinguish participants with and without impaired postural control. The reliability of outcome variables was assessed using inter-class correlations. Strong correlations between outputs derived from the smartphone and research-grade accelerometer were seen across balance tasks (ρ = −0.75–1.00; p ≤ 0.01). Numerous significant moderate correlations between clinical test outcomes and smartphone and research-grade RMS ML accelerometry were seen (ρ = −0.62 to 0.83 (p ≤ 0.044)]. On both devices, the AUC for ROC plots were significant for RMS ML sway during the eyes open task and functional stability boundary (p < 0.05). Reliability of smartphone accelerometry was comparable to the research-grade accelerometer and clinical tests. This pilot study illustrated that smartphone-based accelerometry may be able to provide a valid and reliable assessment of seated postural control and have the ability to distinguish between those with and without impaired postural control.
机译:坐姿势控制是必不可少的轮椅使用者在执行日常活动保持适当的位置。临床试验通常用于测量就座姿势控制,但它们是主观的并且缺乏灵敏度。基于实验室的措施是高度敏感的,但范围有限,仅限于研究环境。建立就座姿势控制的有效的,可靠的和可访问的测量工具用于远程,客观的评估是必要的。因此,本研究的目的是检查的有效性,可靠性和基于智能手机的姿势控制的评估在轮椅使用者敏感度。十一参与者(年龄:35.4±17.9)完成了两个实验考察1周的间隔由三个临床试验:躯干控制试验(TCT),在坐式测试(FIST)功能,以及T恤衫测试,以及标准化仪表平衡的任务是操纵视觉(眼睛打开和关闭),和躯干运动(功能范围和稳定边界)。在这些任务,与会者举行了一个研究级的加速计自己的胸部仪表智能手机。在内侧 - 外侧(ML)最大和均方根(RMS)加速度和前后(AP)轴而得。参与者被分为基于FIST分数不受损和受损的姿势组。 Spearman秩序相关性进行了两个设备的测量结果之间以及这些措施,并与临床试验之间进行。接收器工作特性(ROC)曲线和曲线下(AUC)的区域被确定为区分参与者有和没有受损姿势控制。结果变量的可靠性,使用级间相关评估。从智能电话和研究级加速度计衍生输出之间的强相关性被视为跨越平衡任务(ρ= -0.75-1.00; P≤0.01)。临床试验结果和智能手机和研究级RMS ML加速度计之间的许多显著适中的相关性被视为(ρ= -0.62至0.83(P≤0.044)]。在这两个设备中,ROC曲线的AUC期间分别为RMS ML摇摆显著眼睛睁得大大的任务和功能的稳定边界(p <0.05)。智能手机的加速度计的可靠性相媲美的研究级的加速度计和临床试验。这项试验研究说明,基于智能手机的加速度计可能够提供的坐在一个有效和可靠的评估姿势控制和有那些具有和不受损的姿势控制之间进行区分的能力。

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