Smit Gerwin, Plettenburg Dick H
Department of Biomechanical Engineering, Delft University of Technology, Delft, The Netherlands.
Prosthet Orthot Int. 2010 Dec;34(4):411-27. doi: 10.3109/03093646.2010.486390. Epub 2010 Sep 20.
The Delft Institute of Prosthetics and Orthotics has started a research program to develop an improved voluntary closing, body-powered hand prosthesis. Five commercially available voluntary closing terminal devices were mechanically tested: three hands [Hosmer APRL VC hand, Hosmer Soft VC Male hand, Otto Bock 8K24] and two hooks [Hosmer APRL VC hook, TRS Grip 2S]. The test results serve as a design guideline for future prostheses. A test bench was used to measure activation cable forces and displacements, and the produced pinch forces. The measurements show that the hands require higher activation forces than the hooks and 1.5-8 times more mechanical work. The TRS hook requires the smallest activation force (33 N for a 15 N pinch force) and has the lowest energy dissipation (52 Nmm). The Hosmer Soft hand requires the largest activation force (131 N for a 15 N pinch force) and has the highest energy dissipation (1409 Nmm). The main recommendations for future prostheses are the following: (1) Required activation forces should be below the critical muscle force (∼18% of maximum), to enable continuous activation without muscle fatigue; and (2) hysteresis of mechanism and glove should be lowered, to increase efficiency and controllability.
代尔夫特假肢与矫形器研究所已启动一项研究计划,旨在开发一种改进的主动闭合、身体驱动的手部假肢。对五种市售的主动闭合终端装置进行了机械测试:三款假手[霍斯默APRL VC假手、霍斯默软质VC男性假手、奥托博克8K24]和两款钩子[霍斯默APRL VC钩、TRS握力2S]。测试结果为未来假肢的设计提供了指导方针。使用测试台测量激活缆绳的力和位移以及产生的捏力。测量结果表明,假手比钩子需要更高的激活力,且机械功多1.5至8倍。TRS钩需要的激活力最小(产生15N捏力时为33N),能量耗散最低(52Nmm)。霍斯默软质假手需要的激活力最大(产生15N捏力时为131N),能量耗散最高(1409Nmm)。对未来假肢的主要建议如下:(1)所需的激活力应低于临界肌肉力(约为最大值的18%),以便能够持续激活而不导致肌肉疲劳;(2)应降低机构和手套的滞后现象,以提高效率和可控性。