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数字姿势摆动测量法可量化脊髓小脑共济失调的平衡缺陷。

Digital Measures of Postural Sway Quantify Balance Deficits in Spinocerebellar Ataxia.

机构信息

Precision Motion, APDM Wearable Technologies-A Clario Company, Portland, Oregon, USA.

Department of Neurology, Oregon Health & Science University, Portland, Oregon, USA.

出版信息

Mov Disord. 2024 Apr;39(4):663-673. doi: 10.1002/mds.29742. Epub 2024 Feb 15.

Abstract

BACKGROUND

Maintaining balance is crucial for independence and quality of life. Loss of balance is a hallmark of spinocerebellar ataxia (SCA).

OBJECTIVE

The aim of this study was to identify which standing balance conditions and digital measures of body sway were most discriminative, reliable, and valid for quantifying balance in SCA.

METHODS

Fifty-three people with SCA (13 SCA1, 13 SCA2, 14 SCA3, and 13 SCA6) and Scale for Assessment and Rating of Ataxia (SARA) scores 9.28 ± 4.36 and 31 healthy controls were recruited. Subjects stood in six test conditions (natural stance, feet together and tandem, each with eyes open [EO] and eyes closed [EC]) with an inertial sensor on their lower back for 30 seconds (×2). We compared test completion rate, test-retest reliability, and areas under the receiver operating characteristic curve (AUC) for seven digital sway measures. Pearson's correlations related sway with the SARA and the Patient-Reported Outcome Measure of Ataxia (PROM ataxia).

RESULTS

Most individuals with SCA (85%-100%) could stand for 30 seconds with natural stance EO or EC, and with feet together EO. The most discriminative digital sway measures (path length, range, area, and root mean square) from the two most reliable and discriminative conditions (natural stance EC and feet together EO) showed intraclass correlation coefficients from 0.70 to 0.91 and AUCs from 0.83 to 0.93. Correlations of sway with SARA were significant (maximum r = 0.65 and 0.73). Correlations with PROM ataxia were mild to moderate (maximum r = 0.56 and 0.34).

CONCLUSION

Inertial sensor measures of extent of postural sway in conditions of natural stance EC and feet together stance EO were discriminative, reliable, and valid for monitoring SCA. © 2024 International Parkinson and Movement Disorder Society.

摘要

背景

维持平衡对于独立性和生活质量至关重要。平衡丧失是脊髓小脑共济失调(SCA)的标志。

目的

本研究旨在确定哪些站立平衡条件和身体摆动的数字测量最具区分性、可靠性和有效性,可用于量化 SCA 的平衡。

方法

招募了 53 名 SCA 患者(13 名 SCA1、13 名 SCA2、14 名 SCA3 和 13 名 SCA6)和 SARA 评分 9.28±4.36 分的 31 名健康对照者。参与者在他们的下背部佩戴惯性传感器,分别在六种测试条件(自然姿势、双脚并拢和前后脚姿势,每种姿势均睁眼[EO]和闭眼[EC])下站立 30 秒(×2)。我们比较了七种数字摆动测量的测试完成率、测试-再测试可靠性和受试者工作特征曲线(ROC)下面积(AUC)。Pearson 相关分析将摆动与 SARA 和患者报告的共济失调结果测量(PROM 共济失调)相关联。

结果

大多数 SCA 患者(85%-100%)可以在自然姿势 EC 或 EC 睁眼和双脚并拢 EO 睁眼的情况下站立 30 秒。来自两种最可靠和最具区分性条件(自然姿势 EC 和双脚并拢 EO)的最具区分性数字摆动测量(路径长度、范围、面积和均方根)的皮尔逊相关系数为 0.70 至 0.91,AUC 为 0.83 至 0.93。摆动与 SARA 的相关性具有统计学意义(最大 r=0.65 和 0.73)。与 PROM 共济失调的相关性为轻度至中度(最大 r=0.56 和 0.34)。

结论

在自然姿势 EC 和双脚并拢姿势 EO 条件下,惯性传感器测量的姿势摆动幅度具有区分性、可靠性和有效性,可用于监测 SCA。

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