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Power amplifier circuits for functional electrical stimulation systems

机译:功能性电刺激系统的功率放大器电路

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Introduction: Functional electrical stimulation (FES) is a technique that has been successfully employed in rehabilitation treatment to mitigate problems after spinal cord injury (SCI). One of the most relevant modules in a typical FES system is the power or output amplifier stage, which is responsible for the application of voltage or current pulses of proper intensity to the biological tissue, applied noninvasively via electrodes, placed on the skin surface or inside the muscular tissue, closer to the nervous fibers. The goals of this paper are to describe and discuss about the main power output designs usually employed in transcutaneous functional electrical stimulators as well as safety precautions taken to protect patients. Methods A systematic review investigated the circuits of papers published in IEEE Xplore and ScienceDirect databases from 2000 to 2016. The query terms were a??((FES or Functional electric stimulator) and (circuit or design))a?? with 274 papers retrieved from IEEE Xplore and 29 from ScienceDirect. After the application of exclusion criteria the amount of papers decreased to 9 and 2 from IEEE Xplore and ScienceDirect, respectively. One paper was inserted in the results as a technological contribution to the field. Therefore, 12 papers presented power stage circuits suitable to stimulate great muscles. Discussion The retrieved results presented relevant circuits with different electronic strategies and circuit components. Some of them considered patient safety strategies or aimed to preserve muscle homeostasis such as biphasic current application, which prevents charge accumulation in stimulated tissues as well as circuits that dealt with electrical impedance variation to keep the electrode-tissue interface within an electrochemical safe regime. The investigation revealed a predominance of design strategies using operational amplifiers in power circuits, current outputs, and safety methods to reduce risks of electrical hazards and discomfort to the individual submitted to FES application.
机译:简介:功能性电刺激(FES)是一项成功用于康复治疗的技术,可减轻脊髓损伤(SCI)后的问题。在典型的FES系统中,最相关的模块之一是功率或输出放大器级,该级负责将适当强度的电压或电流脉冲施加到生物组织上,并通过电极无创地施加在皮肤表面或内部。肌肉组织,更靠近神经纤维。本文的目的是描述和讨论通常用于经皮功能性电刺激器的主要功率输出设计,以及为保护患者而采取的安全预防措施。方法:系统综述了2000年至2016年在IEEE Xplore和ScienceDirect数据库中发表的论文的电路。查询词为a ??((FES或功能性电刺激器)和(电路或设计))a?。从IEEE Xplore检索的274篇论文和从ScienceDirect检索的29篇论文。应用排除标准后,IEEE Xplore和ScienceDirect的论文数量分别减少到9和2。结果中插入了一篇论文,作为对该领域的技术贡献。因此,有12篇论文提出了适合刺激大块肌肉的功率级电路。讨论检索到的结果显示了具有不同电子策略和电路组件的相关电路。他们中的一些人考虑了患者安全策略或旨在保持肌肉稳态,例如双相电流施加,这防止了电荷在受刺激的组织以及处理电阻抗变化以使电极-组织界面保持在电化学安全范围内的电路中积累。调查显示,在功率电路,电流输出和安全方法中使用运算放大器的主要设计策略是减少提交给FES申请者的电气危险和不适感。

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