Artificial Intelligence Techniques for Biosignal Pattern Recognition and Classification in Upper-Limb Prostheses: A Review

Dana Terrazas-Rodas, Joanna Carrión-Pérez
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Abstract

Currently, disability is a condition in which people are considered to have long-term physical, mental, intellectual, or sensory impairments due to different circumstances or situations, which may be due to an accident, illness, among others. According to the United Nations (UN), approximately 10% of people (650 million approximately) are registered with some type of disability, which is increasing due to population growth worldwide, medical advances and the aging process. Upper limb prostheses are devices that replace parts of the body of a person or user with upper limb disability or amputation, such as the arm, hand, among others. In this review, various Artificial Intelligence (AI) techniques were examined for their applications such as pattern recognition and classification of biosignals in a total of 72 upper limb prostheses in different categories such as the commercial name or main author’s name of the device, the characteristics of the patient-user who will use it, the level of amputation, the mechanism which is the body part that replaces the bionic hand, the control biosignals that activate the operation of the prosthesis, the Artificial Intelligence (AI) methods that have been employed, the applications of AI techniques and the Technology Readiness Level (TRL), which is the level of development of the upper limb prosthesis between the lowest level (1) and the highest level (9).
人工智能技术在上肢假肢生物信号模式识别与分类中的应用综述
目前,残疾是一种情况,在这种情况下,人们被认为由于不同的情况或情况而有长期的身体、精神、智力或感觉障碍,这可能是由于事故、疾病等造成的。根据联合国(UN)的数据,大约10%的人(约6.5亿人)登记为某种类型的残疾,由于全球人口增长、医学进步和老龄化进程,这一数字正在增加。上肢假肢是用来代替上肢残疾或截肢的人或使用者身体的某些部位,如手臂、手等的装置。在这篇综述中,研究了各种人工智能(AI)技术的应用,如模式识别和生物信号分类,在总共72个不同类别的上肢假肢中,如设备的商业名称或主要作者的名字,使用它的患者-用户的特征,截肢程度,取代仿生手的身体部位的机制,激活假肢操作的控制生物信号,已经采用的人工智能(AI)方法,人工智能技术的应用以及技术就绪水平(TRL), TRL是上肢假肢的最低水平(1)和最高水平(9)之间的发展水平。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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