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find Keyword "经皮神经电刺激" 3 results
  • 经皮神经电刺激在脑卒中后患者治疗中的应用

    经皮神经电刺激是一种非侵入性的治疗方法,属于低频电刺激疗法。它通过表面电极对皮肤的神经纤维产生温和的电流,刺激周围神经末梢来提供感觉输入,以产生治疗效果。它具有操作简单、使用风险低、成本较低、易于被患者接受等优点,而且经过指导后,患者可以在家中进行自我治疗。在既往的临床运用中,经皮神经电刺激常用于治疗疼痛。但是,近些年通过不断地临床探索发现经皮神经电刺激在脑卒中后功能障碍康复治疗中表现了一定效果,可用于改善患者脑卒中后的运动、感觉、肩痛、偏侧忽略、吞咽障碍、尿失禁等问题。相关文献综述较少,现将近年来相关研究进行综述,有利于临床实施。

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  • Development of an Analgesia Therapy System for Delivery Based on Bio-feedback Transcuataneous Electrical Nerve Stimulation

    Transcuataneous electrical nerve stimulation (TENS) analgesia as a non-drug method has received people's more and more attention recently. Considering problems of existing products, such as unstable performance and unsatisfied effectiveness, we developed a new analgesia therapy system for delivery based on bio-feedback TENS in our laboratory. We proposed a new idea for stimulation signal design, that is, we modulated a middle frequency signal by a traditional low frequency TENS wave in the new system. We designed different prescription waves for pain relief during a uterine contraction or massage between contractions. In the end, a bio-feedback TENS method was proposed, in which the waveforms of stimulation signals were selected and their parameters were modified automatically based on feedback from uterine pressure, etc. It was proved through quality tests and clinical trials that the system had good performance and satisfied analgesia effectiveness.

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  • Exploration Research of Treatment Effect Improvement of Transcutaneous Electrical Nerve Stimulation Using Parameter-changing Chaotic Signal

    This article presents a transcutaneous electric stimulator that is based on chaotic signal. Firstly, we in the study used the MATLAB platform in the PC to generate chaotic signal through the chaos equation, and then we transferred the signal out by data acquisition equipment of USB-6251 manufactured by NI Company. In order to obtain high-power signal for transcutaneous electric stimulator, we used the chip of LM3886 to amplify the signal. Finally, we used the power-amplified chaotic signal to stimulate the internal nerve of human through the electrodes fixed on the skin. We obtained different stimulation effects of transcutaneous electric stimulator by changing the parameters of chaotic model. The preliminary test showed that the randomness of chaotic signals improved the applicability of electrical stimulation and the rules of chaos ensured that the stimulation was comfort. The method reported in this paper provides a new way for the design of transcutaneous electric stimulator.

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