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首页> 外文期刊>Journal of medical engineering & technology >The transfer of current through skin and muscle during electrical stimulation with sine, square, Russian and interferential waveforms.
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The transfer of current through skin and muscle during electrical stimulation with sine, square, Russian and interferential waveforms.

机译:正弦波,方波,俄罗斯波和干扰波在电刺激过程中通过皮肤和肌肉的电流传输。

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摘要

Electrical stimulation is a commonly used modality for both athletic training and physical therapy. However, there are limited objective data available to determine the waveform which provides the maximum muscle strength as well as minimizing pain. In the present investigation, two groups of subjects were examined. Group 1 was composed of six males and four females and group 2 was composed of three male and three female subjects. The first series of experiments investigated muscle strength with stimulation at currents of 20, 40 and 60 milliamps using sine, square, Russian and interferential waveforms evaluating strength production and pain as outcomes. The second phase of experiments compared the effect of the different waveforms on current dispersion in surface versus deep muscle electrodes with these same waveforms. The results of the experiments showed that sine wave stimulation produced significantly greater muscle strength and significantly less pain than square wave, Russian or interferential stimulation at that same current. The most painful stimulation was square wave. Strength production was greatest with sine wave and least with Russian and interferential. An explanation of these findings may be the filtering effect of the fat layer separating skin from muscle. The highly conductive muscle and skin dermal layers would form the plates of a capacitor separated by the subcutaneous fat layer providing an RC filter. This filtering effect, while allowing sine wave stimulation to pass to the muscle, reduced power transfer in square wave, Russian and interferential stimulation is observed.
机译:电刺激是运动训练和物理治疗的一种常用方式。但是,只有有限的客观数据可用来确定提供最大肌肉力量并最大程度减少疼痛的波形。在本研究中,检查了两组受试者。第一组由六名男性和四名女性组成,第二组由三名男性和三名女性组成。第一系列实验使用正弦波,方波,俄罗斯波和干扰波波形研究了在20、40和60毫安的电流刺激下的肌肉力量,评估了力量产生和疼痛作为结果。实验的第二阶段比较了不同波形对具有相同波形的表面与深部肌肉电极中电流分散的影响。实验结果表明,在相同电流下,正弦波刺激比方波刺激,俄罗斯刺激或干扰刺激产生的肌肉力量明显更大,疼痛也明显减轻。最痛苦的刺激是方波。正弦波的力量产生最大,而俄罗斯和干涉的力量产生最小。这些发现的解释可能是脂肪层将皮肤与肌肉分开的过滤作用。高导电性的肌肉和皮肤真皮层将形成电容器的板,电容器的板由皮下脂肪层隔开,从而提供RC过滤器。这种过滤效果在使正弦波刺激传递到肌肉的同时,还观察到方波,俄国刺激和干扰刺激中的功率传递减少。

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