Montagnani Federico, Controzzi Marco, Cipriani Christian
Annu Int Conf IEEE Eng Med Biol Soc. 2015;2015:2462-5. doi: 10.1109/EMBC.2015.7318892.
Although significant technological advances have been made in the last forty years, natural and effortless control of upper limb prostheses is still an open issue. Commercially available myoelectric prostheses present limited Degrees of Freedom (DoF) mainly because of the lack of available and reliable independent control signals from the human body. Thus, despite the crucial role that an actuated wrist could play in a transradial prosthesis in terms of avoiding compensatory movements, commercial hand prostheses present only manually adjustable passive wrists or actuated rotators controlled by (unnatural) sequential control strategies. In the present study we investigated the synergies between the humeral orientation with respect to the trunk and the forearm pronation/supination angles during the execution of a wide range of activities of daily living, in healthy subjects. Our results showed consistent postural synergies between the two selected body segments for almost the totality of the activities of daily living under investigation. This is a promising result because these postural synergies could be exploited to automatically control the wrist rotator unit in transradial prostheses improving the fluency and the dexterity of the amputee.
尽管在过去四十年里取得了重大技术进步,但上肢假肢的自然、轻松控制仍是一个未解决的问题。市售的肌电假肢的自由度有限,主要原因是缺乏来自人体的可用且可靠的独立控制信号。因此,尽管在经桡骨截肢假肢中,一个可驱动的手腕在避免代偿性运动方面可以发挥关键作用,但商业手部假肢仅提供手动可调的被动手腕或由(不自然的)顺序控制策略控制的驱动旋转器。在本研究中,我们调查了健康受试者在执行各种日常生活活动期间,肱骨相对于躯干的方向与前臂旋前/旋后角度之间的协同作用。我们的结果表明,在所研究的几乎所有日常生活活动中,两个选定身体节段之间存在一致的姿势协同作用。这是一个很有前景的结果,因为这些姿势协同作用可用于自动控制经桡骨截肢假肢中的手腕旋转单元,从而提高截肢者的流畅性和灵活性。