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首页> 外文期刊>Journal of medical engineering & technology >A re-evaluation of modelling of the current flow between electrodes: consideration of blood flow and wounds.
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A re-evaluation of modelling of the current flow between electrodes: consideration of blood flow and wounds.

机译:电极之间电流建模的重新评估:考虑血流和伤口。

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摘要

Electrical stimulation has been used for exercise, healing wounds, relieving pain, and strengthening muscle. The assumption is that current will flow predictably between electrodes and, therefore, there will be predictability in the clinical response to electrical stimulation. This may not be the case. The present investigation shows that considerable channelling of current occurs when the skin is heated or when there is a wound between the electrodes. By studying current movement in nutrient agar (a homogenous medium), blood agar and layered blood and nutrient agar to simulate areas of increased blood flow, it was found that areas of high or low resistance, especially in the surface layer, caused significant current movement toward (low resistance area) or away (high resistance area) from those areas. When a resister model was used to measure dispersion characteristics of current in a three-dimensional array, it was shown that if even a single resister value was lowered by 20% in the upper layer, current sinking occurred in all three layers of the array. The results seem to imply that where the tissue is non homogeneous due to injury or inflammation, electrode design or current delivery systems need to be modified appropriately to have the intended effect of the electrical stimulation.
机译:电刺激已用于运动,治愈伤口,缓解疼痛和增强肌肉。假设电流将在电极之间可预测地流动,因此,临床对电刺激的反应具有可预测性。事实并非如此。本研究表明,当皮肤被加热或电极之间有伤口时,会发生大量的电流通道。通过研究营养琼脂(均质培养基),血琼脂以及分层的血液和营养琼脂中的电流运动以模拟血流量增加的区域,发现高或低阻力区域(​​尤其是表面层)会引起明显的电流运动朝向(低电阻区域)或远离(高电阻区域)这些区域。当使用电阻器模型测量三维阵列中电流的色散特性时,表明即使在上层将单个电阻器值降低20%,也会在阵列的所有三层中发生电流吸收。结果似乎暗示,在组织由于损伤或炎症而变得不均匀的情况下,需要对电极设计或电流传输系统进行适当修改,以实现电刺激的预期效果。

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