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Proprioceptive sensing system for therapy assessment using textile-based biomedical Micro Electro Mechanical System (MEMS)

机译:使用基于纺织品的生物医学微机电系统(MEMS)进行治疗评估的本体感受传感系统

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Continued demands for better control of the operating conditions used in human motion tracking and medical applications have led to the need for better means of detecting different types of proprioceptive activity pattern. One way to satisfy this need is to use MEMS technology to develop a sensor which can be used later in the rehabilitation treatment of patients and activity monitoring. The purpose of this paper is to provide an overview of the development of textile-based proprioceptive sensor for applications in medical system and therapy assessment by Micro Electro Mechanical Systems (MEMS) technologies. To demonstrate the application of this sensor, a system has been developed in order to detect different finger flexion movements generated on a finger joint. In addition, this paper also describes an ideal design procedure for the development of MEMS proprioceptive sensor fabricated using a cloth as the structural material. Cloth is chosen as the structural material because it is inexpensive, simple to fabricate, readily available for mass production, lightweight and can be fitted onto any arbitrary surface. The cloth is stamped with silver nanoparticles (AgNPs) ink to form conductive pattern. The working principle of this textile-based sensor is based on piezoresistivity effect generated by AgNPs on a cloth substrate. Based on this fact, this sensor can give sensing information about different finger flexure movements according to the resistance change of the AgNPs. This sensor can be used as a rehabilitation device, e.g. data glove or even a communication device for the disabled to control appliances, e.g. computer keyboards.
机译:对更好地控制在人类运动跟踪和医学应用中使用的操作条件的持续需求导致了对检测不同类型的本体感受活动模式的更好手段的需求。满足此需求的一种方法是使用MEMS技术开发一种传感器,该传感器可在以后用于患者的康复治疗和活动监测中使用。本文的目的是概述用于医疗系统和微电子机械系统(MEMS)技术的治疗评估的基于纺织品的本体感受传感器的开发。为了演示该传感器的应用,已经开发了一种系统,用于检测在手指关节上产生的不同的手指屈曲运动。此外,本文还描述了一种理想的设计过程,用于开发以布为结构材料制造的MEMS本体感测器。选择布作为结构材料是因为它价格便宜,制造简单,易于批量生产,重量轻并且可以安装在任意表面上。布料上印有银纳米颗粒(AgNPs)墨水,以形成导电图案。这种基于纺织品的传感器的工作原理是基于AgNP在布基上产生的压阻效应。基于这一事实,该传感器可以根据AgNP的电阻变化提供有关不同手指弯曲动作的感测信息。该传感器可以用作康复设备,例如数据手套甚至是残疾人使用的通讯设备来控制电器,例如电脑键盘。

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