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Smartphone Application with Virtual Reality Goggles for the Reliable and Valid Measurement of Active Craniocervical Range of Motion

机译:具有虚拟现实护目镜的智能手机应用程序可可靠有效地测量主动颈椎运动范围

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摘要

Objective: This study aimed to determine the intra-rater and inter-rater reliability and validity of a hybrid device, combining virtual reality goggles, a magnetometer and an inclinometer application for smartphones, to measure craniocervical range. Summary of Background Data: Accurate evaluation of craniocervical range of motion is important for early detection of certain diseased conditions and monitoring the progress of interventions. The universal goniometer is widely used for the measurement but it requires experienced practitioners. Whether a combination of virtual reality goggles and smartphone applications can provide the same or better performance compared with the goniometer is still unknown. Methods: Forty-one healthy adults from the department of physical medicine and rehabilitation were recruited for craniocervical range examination (flexion, extension, side-bending to the right or left and rotating to the right or left) by using the hybrid device and universal goniometer. Using the hybrid device, repeated measurements were performed twice by a primary rater and once by a second rater. The primary rater also conducted a measurement using the universal goniometer in the same cohort. The intra-rater and inter-rater reliability (intra-class correlation coefficient (ICC)) were calculated using the two-way random effect model, whereas the validity was examined by the Pearson correlation coefficient and Bland-and-Altman plot. The interval between the first and second sessions of the measurement for intra-rater reliability was set at 30 min. Results: Excellent intra-rater (ICC ≥ 0.925) and inter-rater (ICC ≥ 0.880) reliability was noted for the hybrid device. The minimal detectable changes from intra-observer and inter-observer comparisons ranged between 4.12° and 7.42° in all six directions. The Bland-and-Altman plot revealed small mean differences (≤1.68°) between the hybrid device and universal goniometer. Both instruments had highly correlated measurements of craniocervical motion (r values ≥ 0.918). Conclusion: For healthy participants, excellent intra-rater and inter-rater reliability was noted for the hybrid device, and the measurements were consistent with the universal goniometer measurements. Future studies are needed to examine whether the device can perform similarly for patients with neck disorders.
机译:目的:本研究旨在确定混合动力设备的评估者内部和评估者之间的可靠性和有效性,并结合虚拟现实的护目镜,磁力计和用于智能手机的倾角仪应用,以测量颅颈范围。背景数据摘要:准确评估颅颈运动范围对于早期发现某些疾病状况和监测干预进程至关重要。通用测角仪广泛用于测量,但需要经验丰富的从业人员。与测角仪相比,虚拟现实的护目镜和智能手机应用程序的组合能否提供相同或更好的性能仍然未知。方法:招募了来自物理医学和康复科的四十一名健康成年人,通过使用混合装置和通用测角计进行了颅颈范围检查(弯曲,伸展,向左或向左弯曲以及向右或向左旋转) 。使用混合设备,一次评估者进行两次重复测量,第二次评估者进行一次重复测量。初级评估者还在同一队列中使用通用测角仪进行了测量。使用双向随机效应模型计算评估者内部和评估者之间的可靠性(类内相关系数(ICC)),而有效性通过Pearson相关系数和Bland-and-Altman图进行检验。评估者内部可靠性的第一次和第二次测量之间的间隔设置为30分钟。结果:混合设备具有出色的内部评估者(ICC≥0.925)和内部评估者(ICC≥0.880)可靠性。观察者内和观察者间比较的最小可察觉变化在所有六个方向上的范围在4.12°和7.42°之间。 Bland-and-Altman图显示混合设备和通用测角仪之间的平均差异很小(≤1.68°)。两种仪器均具有高度相关的颅颈运动测量值(r值≥0.918)。结论:对于健康参与者,混合设备具有出色的内部评估者和内部评估者可靠性,并且测量结果与通用测角仪的测量结果一致。需要进行进一步的研究,以检查该设备对于颈部疾病患者是否可以起到类似的作用。

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