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惯性测量单元与光电系统测量姿势摆动的一致性。

Agreement between inertial measurement unit and optoelectronic system to measure postural sway.

机构信息

BTS S.p.A., Milan, Italy.

Physiotherapy Unit, Humanitas Clinical and Research Center - IRCCS Rozzano, Milan, Italy.

出版信息

Technol Health Care. 2022;30(3):757-762. doi: 10.3233/THC-212924.

Abstract

BACKGROUND

Optoelectronic systems and force platforms represent the gold standard for postural sway assessment, but pose disadvantages in terms of equipment, cost and preparation time.

OBJECTIVE

Wearable inertial measurement units (IMUs) have been proposed to overcome these issues, but have never been compared to an optoelectronic system. The study aim was therefore to investigate agreement between inertial measurement unit and optoelectronic system in postural sway assessment.

METHODS

Thirty healthy volunteers performed four balance tasks. IMU was placed on the sacrum (S2) with a retroreflective marker over the sensor and subjects' performance was simultaneously recorded by both systems. Total (TOT), anterior-posterior (AP) and medial-lateral (ML) length of trace, range, speed, root mean squared (RMS), and confidence ellipse were computed.

RESULTS

ICCs revealed excellent correlations for Length-TOT, Length-AP and Speed-AP, good correlation for Length-ML, Speed-ML, Confidence Ellipse, Range-AP and RMS-AP, and moderate correlation for range-ML and RMS-ML. Bland-Altman plot showed greater estimation for Length-TOT, Length-AP, Speed-AP, confidence ellipse and RMS-AP using optoelectronic system, and for Length-ML, Range-AP, Range-ML, Speed-ML, RMS-ML using IMU. Both systems revealed the same differences among tasks.

CONCLUSION

The excellent to good agreement of IMU for length of trace and speed parameters and its user-friendly application suggest its potential implementations in clinical practice.

摘要

背景

光电系统和力台代表了姿势摆动评估的金标准,但在设备、成本和准备时间方面存在缺点。

目的

可穿戴惯性测量单元(IMU)已被提出以克服这些问题,但从未与光电系统进行比较。因此,本研究旨在调查惯性测量单元与光电系统在姿势摆动评估中的一致性。

方法

30 名健康志愿者进行了四项平衡任务。IMU 放置在骶骨(S2)上,传感器上方有一个反光标记,两个系统同时记录受试者的表现。计算总(TOT)、前后(AP)和内外(ML)轨迹长度、范围、速度、均方根(RMS)和置信椭圆。

结果

ICC 显示 TOT 长度、AP 长度和 AP 速度具有极好的相关性,ML 长度、ML 速度、置信椭圆、AP 范围和 RMS-AP 具有良好的相关性,ML 范围和 RMS-ML 具有中度相关性。Bland-Altman 图显示,光电系统对 TOT 长度、AP 长度、AP 速度、置信椭圆和 RMS-AP 的估计值更大,而 IMU 对 ML 长度、AP 范围、ML 范围、ML 速度、RMS-ML 的估计值更大。两种系统都揭示了任务之间相同的差异。

结论

IMU 在轨迹长度和速度参数方面具有极好到良好的一致性,并且其用户友好的应用表明其在临床实践中的潜在应用。

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