Suppr超能文献

使用创新的微处理器控制的外部假体膝关节进行上楼梯动作。

Stair ascent with an innovative microprocessor-controlled exoprosthetic knee joint.

作者信息

Bellmann Malte, Schmalz Thomas, Ludwigs Eva, Blumentritt Siegmar

机构信息

Research Biomechanics, Otto Bock HealthCare GmbH, Göttingen, Germany.

出版信息

Biomed Tech (Berl). 2012 Dec;57(6):435-44. doi: 10.1515/bmt-2011-0029.

Abstract

Climbing stairs can pose a major challenge for above-knee amputees as a result of compromised motor performance and limitations to prosthetic design. A new, innovative microprocessor-controlled prosthetic knee joint, the Genium, incorporates a function that allows an above-knee amputee to climb stairs step over step. To execute this function, a number of different sensors and complex switching algorithms were integrated into the prosthetic knee joint. The function is intuitive for the user. A biomechanical study was conducted to assess objective gait measurements and calculate joint kinematics and kinetics as subjects ascended stairs. Results demonstrated that climbing stairs step over step is more biomechanically efficient for an amputee using the Genium prosthetic knee than the previously possible conventional method where the extended prosthesis is trailed as the amputee executes one or two steps at a time. There is a natural amount of stress on the residual musculoskeletal system, and it has been shown that the healthy contralateral side supports the movements of the amputated side. The mechanical power that the healthy contralateral knee joint needs to generate during the extension phase is also reduced. Similarly, there is near normal loading of the hip joint on the amputated side.

摘要

由于运动功能受损和假肢设计的局限性,爬楼梯对膝上截肢者来说可能是一项重大挑战。一种新型的、创新的微处理器控制的假肢膝关节——Genium,具有一项功能,可让膝上截肢者一步一步地爬楼梯。为了实现这一功能,多种不同的传感器和复杂的切换算法被集成到了假肢膝关节中。该功能对用户来说很直观。进行了一项生物力学研究,以评估受试者上楼梯时的客观步态测量结果,并计算关节运动学和动力学。结果表明,对于使用Genium假肢膝关节的截肢者来说,一步一步地爬楼梯在生物力学上比以前可能的传统方法更有效,在传统方法中,当截肢者一次执行一步或两步时,伸展的假肢会拖在后面。残余肌肉骨骼系统会承受一定的自然压力,并且已经表明,健康的对侧会支持截肢侧的运动。健康对侧膝关节在伸展阶段需要产生的机械功率也会降低。同样,截肢侧髋关节的负荷接近正常。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验