Low cost, compact and pulsated constant current microcontroller based nerve locator

H. A. Alzomor, B. K. Ouda
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引用次数: 1

Abstract

Regional anesthesia is preferred to global anesthesia when applicable due to its safety, low cost and patient preference. Successful regional anesthesia depends upon precise location of the peripheral nerve or nerve plexus. Locating peripheral nerves is usually done using nerve stimulation which is considered by many to be the current `gold standard'. In order to generate a nerve impulse by electrical means, a threshold stimulus of current must be applied to the nerve “rheobase”. The technique depends on stimulating muscular twitching at a close distance to the nerve without actually touching it. In this paper, a design for μcontroller-based nerve locator is introduced. The current delivered to the nerve is maintained constant in the proposed design for a wide range of load impedances. The device is tested and used to locate the nerves in the limbs of the animal. Moreover, the device tested successfully against IEC safety standards and compared to prior arts. The comparison is based on five characteristics which are waveform, current intensity, impulse duration, maximum load and functionality. Based on that rules the proposed design is able to achieve reasonably high scores that put it on the second place among 22 available nerve stimulators.
低成本,紧凑的脉动恒流微控制器神经定位器
由于区域麻醉的安全性、低成本和患者的偏好,在适用的情况下,区域麻醉优于全身麻醉。成功的区域麻醉依赖于周围神经或神经丛的精确定位。定位周围神经通常使用神经刺激,这被许多人认为是目前的“黄金标准”。为了通过电学手段产生神经冲动,必须对神经“流变基”施加电流阈值刺激。这项技术依赖于在不接触神经的情况下近距离刺激肌肉抽搐。介绍了一种基于μ控制器的神经定位器的设计。在广泛的负载阻抗范围内,所提出的设计中,传递给神经的电流保持恒定。该装置经过测试并用于定位动物四肢的神经。此外,与现有技术相比,该设备成功地通过了IEC安全标准测试。比较基于波形、电流强度、脉冲持续时间、最大负载和功能这五个特性。基于这些规则,提出的设计能够获得相当高的分数,使其在22种可用的神经刺激器中排名第二。
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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