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传统非关节式 SACH 假肢或多轴假肢用于膝关节活动度降低的胫部截肢者?关于活动能力、平衡能力和生活质量的临床比较。

The Conventional Non-Articulated SACH or a Multiaxial Prosthetic Foot for Hypomobile Transtibial Amputees? A Clinical Comparison on Mobility, Balance, and Quality of Life.

作者信息

Paradisi Francesco, Delussu Anna Sofia, Brunelli Stefano, Iosa Marco, Pellegrini Roberto, Zenardi Daniele, Traballesi Marco

机构信息

Santa Lucia Foundation, Scientific Institute for Research, Hospitalization and Health Care, Via Ardeatina 306, 00179 Rome, Italy ; Department of Movement, Human and Health Sciences, Interuniversity Centre of Bioengineering of the Human Neuromusculoskeletal System, University of Rome "Foro Italico", Piazza Lauro De Bosis 6, 00135 Rome, Italy.

Santa Lucia Foundation, Scientific Institute for Research, Hospitalization and Health Care, Via Ardeatina 306, 00179 Rome, Italy.

出版信息

ScientificWorldJournal. 2015;2015:261801. doi: 10.1155/2015/261801. Epub 2015 May 11.

Abstract

The effects of a non-articulated SACH and a multiaxial foot-ankle mechanism on the performance of low-activity users are of great interest for practitioners in amputee rehabilitation. The aim of this study is to compare these two prosthetic feet and assess possible improvements introduced by the increased degrees of freedom provided by the multiaxial foot. For this purpose, a group of 20 hypomobile transtibial amputees (TTAs) had their usual SACH replaced with a multiaxial foot. Participants' functional mobility, involving ambulatory skills in overground level walking, ramps, and stairs, was evaluated by performing Six-Minute Walking Test (6 MWT), Locomotor Capability Index-5 (LCI-5), Hill Assessment Index (HAI), and Stair Assessment Index (SAI). Balance performances were assessed using Berg Balance Scale (BBS) and analysing upper body accelerations during gait. Moreover, the Prosthesis Evaluation Questionnaire (PEQ) was performed to indicate the prosthesis-related quality of life. Results showed that participants walked faster using the multiaxial foot (p < 0.05) maintaining the same upright gait stability. Significant improvements with the multiaxial foot were also observed in BBS, LCI-5, and SAI times and 4 of 9 subscales of the PEQ. Our findings demonstrate that a multiaxial foot represents a considerable alternative solution with respect to the conventional SACH in the prosthetic prescription for hypomobile TTAs.

摘要

对于截肢康复领域的从业者而言,非活动型单轴碳纤脚(SACH)和多轴脚踝机制对低活动量使用者运动表现的影响备受关注。本研究旨在比较这两种假脚,并评估多轴脚所提供的增加自由度可能带来的改善。为此,一组20名活动能力低下的经胫骨截肢者(TTA)将他们常用的SACH更换为多轴脚。通过进行六分钟步行测试(6MWT)、运动能力指数-5(LCI-5)、爬坡评估指数(HAI)和楼梯评估指数(SAI),对参与者在地面行走、坡道和楼梯上的步行技能等功能移动性进行评估。使用伯格平衡量表(BBS)并分析步态期间的上身加速度来评估平衡表现。此外,还进行了假肢评估问卷(PEQ)以表明与假肢相关的生活质量。结果显示,使用多轴脚时参与者行走速度更快(p<0.05),同时保持相同的直立步态稳定性。在BBS、LCI-5和SAI时间以及PEQ的9个分量表中的4个方面,多轴脚也有显著改善。我们的数据表明,对于活动能力低下的TTA患者,在假肢处方中,多轴脚是相对于传统SACH的一种相当不错的替代解决方案。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/521f/4442286/b33b4f0efef5/TSWJ2015-261801.001.jpg

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