Istituto Italiano di Tecnologia, Via Morego 30, 16163, Genoa, Italy.
Centro "E. Piaggio" and Dipartimento di Ingegneria dell'Informazione, University of Pisa, Largo Lucio Lazzarino 1, 56127, Pisa, Italy.
Sci Rep. 2021 Dec 14;11(1):23952. doi: 10.1038/s41598-021-02562-y.
Notwithstanding the advancement of modern bionic hands and the large variety of prosthetic hands in the market, commercial devices still present limited acceptance and percentage of daily use. While commercial prostheses present rigid mechanical structures, emerging trends in the design of robotic hands are moving towards soft technologies. Although this approach is inspired by nature and could be promising for prosthetic applications, there is scant literature concerning its benefits for end-users and in real-life scenarios. In this work, we evaluate and assess the role and the benefits of soft robotic technologies in the field of prosthetics. We propose a thorough comparison between rigid and soft characteristics of two poly-articulated hands in 5 non-expert myo-electric prosthesis users in pre- and post-therapeutic training conditions. The protocol includes two standard functional assessments, three surveys for user-perception, and three customized tests to evaluate the sense of embodiment. Results highlight that rigid hands provide a more precise grasp, while soft properties show higher functionalities thanks to their adaptability to different requirements, intuitive use and more natural execution of activities of daily living. This comprehensive evaluation suggests that softness could also promote a quick integration of the system in non-expert users.
尽管现代仿生手和市场上各种假肢手取得了进步,但商业设备的接受程度和日常使用率仍然有限。虽然商业假肢具有刚性机械结构,但机器人手的设计趋势正在向软技术发展。尽管这种方法受到自然的启发,并可能在假肢应用中具有广阔的前景,但关于其对终端用户和现实生活场景的益处的文献却很少。在这项工作中,我们评估和评估了软机器人技术在假肢领域的作用和益处。我们提出了在 5 名非专业肌电假肢使用者中,在治疗前和治疗后训练条件下,对两种多关节手的刚性和软特性进行全面比较。该方案包括两个标准功能评估、三个用户感知调查和三个定制测试,以评估体现感。结果表明,刚性手提供更精确的抓握,而软特性由于其适应性、直观性和更自然地执行日常生活活动,显示出更高的功能。这种全面的评估表明,柔软性也可以促进系统在非专业用户中的快速集成。