使用智能手套的基于物联网的截瘫患者通信设备

B. S
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引用次数: 0

摘要

截瘫是一种影响腿部的瘫痪,通常严重影响人体的下半身。截瘫发生时,颈部下方可能有损伤。最常见的动机是创伤,如运动损伤或交通事故。其他原因包括中风、脊柱肿瘤以及癌症。本文提供了一种新颖的设计来增强瘫痪患者的对话。该设备是一种智能手套,用于捕捉手势并将其转换为口头命令。这款手套配备了传感器和处理器,可以发现手势并将其转换为指示器。该工具设计简单,用户友好,允许患者快速适应其使用。该工具同样被设计为低成本和方便,允许更多的瘫痪患者使用它。对该设备的性能进行了测试和评估,结果表明它可以准确地捕捉和解释患者的手势。在大多数情况下,瘫痪的人(如单侧瘫痪、偏瘫、截瘫)不能与他人或他们的看护人互动或交流。这张主要基于智能手套的因素网有助于受影响的人向照顾者传达他们的需求。它可以测量脉搏、体温、血压和陀螺仪。在陀螺仪传感器有一个信息,基于路线或运动,它可以通过显示和音频传达。它可以通过互联网和智能手机进行筛查。但不能用于四肢瘫痪患者。结论是,四肢瘫痪的病人不能移动他们的身体,如果将来我们能够通过传感器或任何设备读取病人的神经元信号,然后我们就能理解他们需要什么或想要什么。因此,该系统可以根据需要显示或听到可使用的音频,更新为经济可行的神经读取传感器。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
IOT Based Paraplegia Patient Communication Device Using Smart Glove
Paraplegia is a paralysis that affects the legs and often seriously affects the lower half of a human body. Paraplegia happens whilst there may be damage underneath the neck. The maximum common motive is trauma, such as sports injury or vehicle accident. other causes are stroke, spine tumors, together with cancers. This paper provides a novel design to enhance the conversation of paralysis sufferers. The device is a clever glove that is used to seize hand gestures and convert them into verbal commands. The glove is geared up with sensors and processors that discover the hand gestures and convert them into indicators. The tool is designed to be simple and user-friendly, allowing patients to quickly adapt to its use. The tool is likewise designed to be low-cost and handy, permitting more paralysis patients to use it. The device is tested and evaluated for its performance, and the outcomes display that it may accurately capture and interpret the hand gestures of the sufferers. In most cases paralyzed affected person (like Monoplegia, Hemiplegia, Paraplegia) aren’t capable of interact or communicate with others or their caretaker. This net of factors primarily based clever glove facilitates the affected person to convey their needs to the caretakers. It measures pulse, temperature, blood pressure and gyro. In gyroscope sensor there is a message, based at the route or motion in which it can be conveyed thru show and audio. it is able to screen thru internet and smart telephones. but it can not be used for tetraplegia patient. It is concluded that in quadriplegia as patients can not move their body, if in future we can able to read the neuron signals of the patients through sensor or any device and then we can able to understand what they need or what they want. Consequently the system can be able to display or hear through audio which can be used according to the need, updating into neuro reading sensors which are economically viable.
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来源期刊
Bioscience Biotechnology Research Communications
Bioscience Biotechnology Research Communications BIOTECHNOLOGY & APPLIED MICROBIOLOGY-
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