Semasinghe Chathura Lakshan, Madusanka Dannangoda Gamage Kanishka, Ranaweera Ranaweera Kaluarachchige Pubudu Sampath, Gopura Ranathunga Arachchilage Ruwan Chandra
Bionics Laboratory, Department of Mechanical Engineering, University of Moratuwa, Sri Lanka.
Int J Med Robot. 2019 Feb;15(1):e1960. doi: 10.1002/rcs.1960. Epub 2018 Oct 12.
Prosthesis is a wearable device that intends to provide the functionality and/or appearance of a missing body part. In the case of trans-radial prostheses, the wearer or the trans-radial amputee is fitted with an artificial wrist and a hand that is either mechanically or electro-mechanically operated. Main aim is to enable the wearer to perform activities of daily living with minimal external assistance.
In this review paper, hardware systems of state-of-the-art trans-radial prostheses have been briefly discussed. Focus is to provide an insight on the latest technologies employed in development of its mechanical systems: terminal devices, artificial wrist joints, and body attachments. In that context, latest hardware designs on terminal devices for grasping motion are presented as it is the primary function of trans-radial prostheses. Hardware designs of prosthetic wrists and body attachments are also reviewed. Finally, latest trends and future directions on design of trans-radial prostheses are explored and presented.
Size, shape, weight, durability, appearance, and functionality are the key factors that need to be considered when developing a trans-radial prosthesis. Moreover, the current developments are moving closer to a human upper limb. However, the availability of these devices is minimum due to high-tech involved and the high cost, which necessitates further development trans-radial prostheses.
假肢是一种可穿戴设备,旨在提供缺失身体部位的功能和/或外观。对于经桡骨截肢者使用的假肢,佩戴者即经桡骨截肢者会安装一个人工手腕和一只通过机械或电动机械操作的手。主要目的是使佩戴者在最少的外部协助下进行日常生活活动。
在这篇综述论文中,简要讨论了最先进的经桡骨假肢的硬件系统。重点是深入了解其机械系统开发中采用的最新技术:终端设备、人工腕关节和身体连接件。在此背景下,介绍了用于抓握动作的终端设备的最新硬件设计,因为这是经桡骨假肢的主要功能。还综述了假肢手腕和身体连接件的硬件设计。最后,探讨并介绍了经桡骨假肢设计的最新趋势和未来方向。
在开发经桡骨假肢时,尺寸、形状、重量、耐用性、外观和功能是需要考虑的关键因素。此外,当前的发展正朝着更接近人类上肢的方向迈进。然而,由于涉及高科技和高成本,这些设备的可用性极低,这就需要进一步开发经桡骨假肢。