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使用惯性测量单元评估骨盆和躯干活动范围的验证

Validation of Pelvis and Trunk Range of Motion as Assessed Using Inertial Measurement Units.

作者信息

Ali Farwa, Hogen Cecilia A, Miller Emily J, Kaufman Kenton R

机构信息

Department of Neurology, Mayo Clinic, Rochester, MN 55905, USA.

Department of Orthopedic Surgery, Mayo Clinic, Rochester, MN 55905, USA.

出版信息

Bioengineering (Basel). 2024 Jun 28;11(7):659. doi: 10.3390/bioengineering11070659.

Abstract

Trunk and pelvis range of motion (ROM) is essential to perform activities of daily living. The ROM may become limited with aging or with neuromusculoskeletal disorders. Inertial measurement units (IMU) with out-of-the box software solutions are increasingly being used to assess motion. We hypothesize that the accuracy (validity) and reliability (consistency) of the trunk and pelvis ROM during steady-state gait in normal individuals as measured using the Opal APDM 6 sensor IMU system and calculated using Mobility Lab version 4 software will be comparable to a gold-standard optoelectric motion capture system. Thirteen healthy young adults participated in the study. Trunk ROM, measured using the IMU was within 5-7 degrees of the motion capture system for all three planes and within 10 degrees for pelvis ROM. We also used a triad of markers mounted on the sternum and sacrum IMU for a head-to-head comparison of trunk and pelvis ROM. The IMU measurements were within 5-10 degrees of the triad. A greater variability of ROM measurements was seen for the pelvis in the transverse plane. IMUs and their custom software provide a valid and reliable measurement for trunk and pelvis ROM in normal individuals, and important considerations for future applications are discussed.

摘要

躯干和骨盆的活动范围(ROM)对于进行日常生活活动至关重要。随着年龄增长或患有神经肌肉骨骼疾病,活动范围可能会受限。带有现成软件解决方案的惯性测量单元(IMU)越来越多地用于评估运动。我们假设,使用Opal APDM 6传感器IMU系统测量并使用Mobility Lab版本4软件计算得出的正常个体在稳态步态期间躯干和骨盆ROM的准确性(有效性)和可靠性(一致性)将与金标准光电运动捕捉系统相当。13名健康的年轻成年人参与了该研究。使用IMU测量的躯干ROM在所有三个平面上与运动捕捉系统的测量值相差5 - 7度,骨盆ROM相差10度以内。我们还在胸骨和骶骨IMU上安装了一组标记物,用于躯干和骨盆ROM的直接比较。IMU测量值与该组标记物相差5 - 10度。在横平面上,骨盆ROM测量值的变异性更大。IMU及其定制软件为正常个体的躯干和骨盆ROM提供了有效且可靠的测量,并且讨论了未来应用的重要注意事项。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5cd5/11273649/a7c287951c71/bioengineering-11-00659-g001.jpg

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