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主动膝关节假体的驱动装置及其日常生活活动目标设计输出的综述。

Review of the actuators of active knee prostheses and their target design outputs for activities of daily living.

作者信息

Pieringer Dominik Simon, Grimmer Martin, Russold Michael Friedrich, Riener Robert

出版信息

IEEE Int Conf Rehabil Robot. 2017 Jul;2017:1246-1253. doi: 10.1109/ICORR.2017.8009420.

Abstract

Active prosthetic knees have the capability to provide net positive work, which is required in daily activities like stair and ramp negotiation or sit-to-stand transfers. Adding this capability might help to increase user mobility, safety, and independence. This article summarizes the biomechanical knee requirements for different activities of daily living and critically compares them with the actuator characteristics of state-of-the-art active prosthetic knee joints. As a result of a systematic literature research 22 active prosthetic knee joints were identified. Most systems use a stiff actuator in combination with a ball screw and are capable of supporting the majority of daily tasks for the average US citizen (82.5 kg) at self-selected movement speed. Physiological requirements exceed most system specifications if increased user mass, walking speed, or inclinations are assumed. To cope with the requirements, springs and dampers are used to assist the motor. The comparison of the prostheses characteristics with anthropometric data shows that most of the devices are in the physiological range for the system height and even when being tethered it is critical to achieve a physiological mass. Also while just one active knee is commercialized so far, physiological knee biomechanics show that there is a potential for active prosthetic knee solutions. Summarized biomechanical and anthropometric data can be used as a framework to develop prototypes. Further, the overview of state-of-the-art systems can provide possible solutions to deal with the task specific prosthetic knee requirements.

摘要

主动式假肢膝关节能够提供净正功,这在诸如上下楼梯、通过斜坡或从坐立状态转移等日常活动中是必需的。增加这种功能可能有助于提高使用者的行动能力、安全性和独立性。本文总结了日常生活中不同活动对膝关节的生物力学要求,并将其与最先进的主动式假肢膝关节的 actuator 特性进行了严格比较。通过系统的文献研究,确定了 22 种主动式假肢膝关节。大多数系统使用刚性 actuator 与滚珠丝杠相结合,能够以自选的运动速度支持美国普通公民(82.5 千克)的大多数日常任务。如果假设使用者体重增加、行走速度加快或有坡度,生理需求将超过大多数系统的规格。为了满足这些需求,使用弹簧和阻尼器来辅助电机。假肢特性与人体测量数据的比较表明,大多数设备在系统高度的生理范围内,即使是在有系绳的情况下,实现生理质量也至关重要。此外,虽然到目前为止只有一款主动膝关节实现了商业化,但生理膝关节生物力学表明主动式假肢膝关节解决方案具有潜力。总结的生物力学和人体测量数据可作为开发原型的框架。此外,对最先进系统的概述可以提供应对特定任务假肢膝关节要求的可能解决方案。

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