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Application of NiTi in Assistive and Rehabilitation Devices: A Review

机译:NiTi在辅助和康复器械中的应用:综述

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摘要

Shape memory alloys (SMAs) have found widespread applications as biomedical devices. Biocompatibility, corrosion resistance, and ductility make these alloys attractive for medical devices such as stents and filters. For these implants, the superelastic property is the primary function of SMAs. Additionally, these alloys, such as NiTi as the prime example, can be used for actuation. Several modes of actuation such as displacement control, force control, and compliance control have been used as harnesses with SMA devices. These two unique properties have opened another application in the form of neurosurgery and robot-assisted surgery devices, as well as controlled assistive and rehabilitation devices. This paper reviews the state of the art of application of SMAs in the latter category where control is applied to harness innovative medical devices. To this end, two major subsets of these devices: prosthesis and orthosis which take the advantage of SMAs in assistive and rehabilitation devices are studied. These devices are further categorized to hand prosthetics, elbow, knee and ankle orthotics. In most of these designs, SMA wires act as artificial muscles to mimic the motion of limbs in the target joints. The evolution of each category is explained, and the specific results of them are reported. The paper also reviews the SMA applications for neurological and neuromuscular rehabilitation. To this end, different categories of rehabilitation devices as a passive and aided exercise for the ankle, knee, and elbow are highlighted. The SMA actuator in these devices can be EMG-controlled to improved patient outcome. In addition to providing a comprehensive overview of the biomedical devices, this paper identifies several possible future directions of SMA related research in the area of assistive and rehabilitation devices.
机译:形状记忆合金(SMA)已作为生物医学设备得到广泛应用。生物相容性,耐腐蚀性和延展性使这些合金对诸如支架和过滤器之类的医疗设备具有吸引力。对于这些植入物,超弹性性能是SMA的主要功能。另外,这些合金,例如作为主要例子的NiTi,可以用于致动。几种促动模式(例如位移控制,力控制和顺应性控制)已用作SMA设备的线束。这两个独特的特性以神经外科手术和机器人辅助手术设备以及受控辅助和康复设备的形式开辟了另一种应用。本文回顾了SMA在后一类应用中的应用现状,在该类中,控制被用于利用创新型医疗设备。为此,研究了这些设备的两个主要子集:假体和矫形器,它们在辅助和康复设备中利用了SMA。这些设备进一步分类为手部假肢,肘部,膝盖和脚踝矫形器。在大多数这些设计中,SMA线充当人造肌肉,以模仿目标关节中四肢的运动。解释了每个类别的演变,并报告了它们的具体结果。本文还回顾了SMA在神经和神经肌肉康复中的应用。为此,重点介绍了不同种类的康复设备,作为踝关节,膝盖和肘部的被动和辅助锻炼。这些设备中的SMA执行器可以进行EMG控制,以改善患者预后。除了提供对生物医学设备的全面概述之外,本文还确定了在辅助和康复设备领域中与SMA相关的研究的几个可能的未来方向。

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