使用集成可穿戴系统了解任务条件对脑卒中后个体步态不对称的影响。

IF 2.6 4区 医学 Q2 COMPUTER SCIENCE, INTERDISCIPLINARY APPLICATIONS
Shashi Ranjan, Priya Darji, Shraddha J Diwan, Uttama Lahiri
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引用次数: 0

摘要

偏瘫患者通常表现出步态异常,导致行走时下肢肌肉激活相关(隐性)和步态相关(显性)测量(提供有关步态的补充信息)不对称。加上偏瘫,在不同的任务条件下行走时,这种不对称性可能会加剧,即不说话行走(单一任务),边走边倒数(双重任务),边拿着物体边倒数(多重任务)。这强调需要量化多任务和双任务对步态不对称的加重影响程度。在这里,我们使用集成可穿戴系统,对一组年龄匹配的偏瘫(Grp_S)和健康(Grp_H)个体进行了一项研究,以了解我们的系统在量化显性和隐性步态测量的不对称性方面的潜力,偏瘫状况的含义和不同的任务条件对这些不对称性测量的影响及其临床相关性。结果表明,我们的系统在量化步态的显式和隐式测量中的不对称性方面具有潜力,这些测量在统计学上更高(p值)
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Understanding the implication of task conditions on asymmetry in gait of post-stroke individuals using an Integrated Wearable System.

Hemiplegic individuals often demonstrate gait abnormality causing asymmetry in lower-limb muscle activation-related (implicit) and gait-related (explicit) measures (offering complementary information on one's gait) while walking. Added to hemiplegia, such asymmetry can be aggravated while walking under varying task conditions, namely, walking without speaking (single task), walking while counting backwards (dual task), and walking while holding an object and counting backwards (multiple task). This emphasizes the need to quantify the extent of aggravated implication of multiple-task and dual-task on gait asymmetry compared to single task. Here, we used Integrated Wearable System and carried out a study with a group of age-matched hemiplegic (Grp_S) and healthy (Grp_H) individuals to understand the potential of our system in quantifying asymmetry in explicit and implicit measures of gait, implication of hemiplegic condition and varying task conditions on these asymmetry measures along with their clinical relevance. Results showed the potential of our system in quantifying asymmetry in both explicit and implicit measures of gait, and these measures were statistically higher (p-value < 0.05) in Grp_S than Grp_H irrespective of the task conditions. Also, for Grp_S, these asymmetry measures became more pronounced as task demand increased, and again, these measures have shown a correlation with their risk of fall specifically during more attention-demanding tasks that could be clinically relevant.

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来源期刊
Medical & Biological Engineering & Computing
Medical & Biological Engineering & Computing 医学-工程:生物医学
CiteScore
6.00
自引率
3.10%
发文量
249
审稿时长
3.5 months
期刊介绍: Founded in 1963, Medical & Biological Engineering & Computing (MBEC) continues to serve the biomedical engineering community, covering the entire spectrum of biomedical and clinical engineering. The journal presents exciting and vital experimental and theoretical developments in biomedical science and technology, and reports on advances in computer-based methodologies in these multidisciplinary subjects. The journal also incorporates new and evolving technologies including cellular engineering and molecular imaging. MBEC publishes original research articles as well as reviews and technical notes. Its Rapid Communications category focuses on material of immediate value to the readership, while the Controversies section provides a forum to exchange views on selected issues, stimulating a vigorous and informed debate in this exciting and high profile field. MBEC is an official journal of the International Federation of Medical and Biological Engineering (IFMBE).
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