首页> 外文期刊>Journal of mechanics in medicine and biology >TENDON REFLEX AND STRATEGIES FOR QUANTIFICATION, WITH NOVEL METHODS INCORPORATING WIRELESS ACCELEROMETER REFLEX QUANTIFICATION DEVICES, A PERSPECTIVE REVIEW
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TENDON REFLEX AND STRATEGIES FOR QUANTIFICATION, WITH NOVEL METHODS INCORPORATING WIRELESS ACCELEROMETER REFLEX QUANTIFICATION DEVICES, A PERSPECTIVE REVIEW

机译:肌腱反射和定量化策略,采用新颖的方法结合无线加速计反射定量化装置,进行了回顾

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The deep tendon reflex is a fundamental aspect of a neurological examination. The two major parameters of the tendon reflex are response and latency, which are presently evaluated qualitatively during a neurological examination. The reflex loop is capable of providing insight into the status and therapy response of both upper and lower motor neuron syndromes. Attempts have been made to ascertain reflex response and latency; however, these systems are relatively complex, resource intensive, with issues of consistent and reliable accuracy. The solution presented is a wireless quantified reflex device using tandem three-dimensional (3D) wireless accelerometers to obtain response based on acceleration waveform amplitude and latency derived from temporal acceleration waveform disparity. Three specific aims have been established for the proposed wireless quantified reflex device: (1) Demonstrate the wireless quantified reflex device is reliably capable of ascertaining quantified reflex response and latency using a quantified input. (2) Evaluate the precision of the device using an artificial reflex system. (3) Conduct a longitudinal study respective of subjects with healthy patellar tendon reflexes, using the wireless quantified reflex evaluation device to obtain quantified reflex response and latency. Aim 1 has led to a steady evolution of the wireless quantified reflex device from a singular 2D wireless accelerometer capable of measuring reflex response to a tandem 3D wireless accelerometer capable of reliably measuring reflex response and latency. The hypothesis for aim 1 is that a reflex quantification device can be established for reliably measuring reflex response and latency for the patellar tendon reflex, comprised of an integrated system of wireless 3D MEMS accelerometers. Aim 2 further emphasized the reliability of the wireless quantified reflex device by evaluating an artificial reflex system. The hypothesis for aim 2 is that the wireless quantified re...
机译:深层腱反射是神经系统检查的基本方面。腱反射的两个主要参数是反应和潜伏期,目前在神经系统检查中对其进行定性评估。反射环能够提供对上下运动神经元综合征的状态和治疗反应的洞察力。已尝试确定反射反应和潜伏期。但是,这些系统相对复杂,占用大量资源,并且存在一致和可靠的准确性问题。提出的解决方案是一种无线量化反射设备,该设备使用串联三维(3D)无线加速度计来获得基于加速度波形幅度和从时间加速度波形差异得出的等待时间的响应。对于所提出的无线量化反射设备已经建立了三个具体目标:(1)证明无线量化反射设备可靠地能够使用量化输入来确定量化反射响应和等待时间。 (2)使用人工反射系统评估设备的精度。 (3)使用无线量化反射评估设备对of骨腱反射健康的受试者进行纵向研究,以获得量化的反射反应和潜伏期。目标1导致无线量化反射设备从能够测量反射响应的奇异2D无线加速度计到能够可靠地测量反射响应和等待时间的串联3D无线加速度计的稳步发展。目标1的假设是可以建立反射定量设备,以可靠地测量tell腱反射的反射反应和潜伏期,该设备由无线3D MEMS加速度计的集成系统组成。目标2通过评估人工反射系统进一步强调了无线量化反射设备的可靠性。目标2的假设是无线量化指标

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