Sensor-based gait analyses of the six-minute walk test identify qualitative improvement in gait parameters of people with multiple sclerosis after rehabilitation

被引:0
作者
Pål Berg-Hansen
Stine Marit Moen
Andreas Austeng
Victor Gonzales
Thomas Dahl Klyve
Henrik Negård
Trine Margrethe Seeberg
Elisabeth Gulowsen Celius
Frédéric Meyer
机构
[1] Oslo University Hospital,Department of Neurology
[2] MS Center Hakadal,Department of Informatics
[3] University of Oslo,Institute of Clinical Medicine
[4] SINTEF Digital,undefined
[5] Smart Sensor Systems,undefined
[6] University of Oslo,undefined
来源
Journal of Neurology | 2022年 / 269卷
关键词
Multiple sclerosis; Six-minute walk; Gait analysis; Inertial measurement units; Wearable sensors; Biomechanics;
D O I
暂无
中图分类号
学科分类号
摘要
The aim of this work was to determine whether wearable inertial measurement units (IMUs) could detect gait improvements across different disability groups of people with Multiple Sclerosis (pwMS) by the six-minute walk test (6MWT) during a rehabilitation stay in a specialized rehabilitation center. Forty-six pwMS and 20 healthy controls (HC) were included in the study. They performed the 6MWT with two inertial measurement units (IMUs) placed on the feet. Thirty-two of the pwMS were retested at the end of the stay. PwMS were divided in a mild-disability and a moderate-disability group. The 6MWT was divided in six sections of 1 min each for technical analysis, and linear mixed models were used for statistical analyses. The comparison between the two disability groups and HC highlighted significant differences for each gait parameter (all p < 0.001). The crossing effect between the test–retest and the two disability groups showed greater improvement for the moderate-disability group. Finally, the gait parameter with the higher effect size, allowing the best differentiation between the disability groups, was the foot flat ratio (R2 = 0.53). Gait analyses from wearable sensors identified different evolutions of gait patterns during the 6MWT in pwMS with different physical disability. The measured effect of a short-time rehabilitation on gait with 6MWT was higher for pwMS with higher degree of disability. Using IMUs in a clinical setting allowed to identify significant changes in inter-stride gait patterns. Wearable sensors and key parameters have the potential as useful clinical tools for focusing on gait in pwMS.
引用
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页码:3723 / 3734
页数:11
相关论文
共 212 条
[11]  
Reingold SC(2016)Toward pervasive gait analysis with wearable sensors: a systematic review IEEE J Biomed Health Inform 20 1521-362
[12]  
Polman CH(2017)Motion sensors in multiple sclerosis: narrative review and update of applications Expert Rev Med Devices 14 891-4228
[13]  
Wolinsky JS(2017)Wearable biosensors to monitor disability in multiple sclerosis Neurol Clin Pract 7 354-3006
[14]  
Goldman MD(2021)Toward a remote assessment of walking bout and speed: application in patients with multiple sclerosis IEEE J Biomed Health Inform 25 4217-1752
[15]  
Marrie RA(2014)Estimation of step-by-step spatio-temporal parameters of normal and impaired gait using shank-mounted magneto-inertial sensors: application to elderly, hemiparetic, parkinsonian and choreic gait J Neuroeng Rehabil 11 152-35
[16]  
Cohen JA(2010)3D gait assessment in young and elderly subjects using foot-worn inertial sensors J Biomech 43 2999-55
[17]  
Baert I(2018)Wearable sensors for clinical applications in epilepsy, Parkinson's disease, and stroke: a mixed-methods systematic review J Neurol 265 1740-628
[18]  
Freeman J(2017)Gait deficits in people with multiple sclerosis: a systematic review and meta-analysis Gait Posture 51 25-156
[19]  
Smedal T(2013)Gait variability and disability in multiple sclerosis Gait Posture 38 51-e1892
[20]  
Dalgas U(2006)Gait and balance impairment in early multiple sclerosis in the absence of clinical disability Mult Scler 12 620-1945