生物医学工程
刺激
电极
经皮神经电刺激
材料科学
电流密度
有限元法
多物理
功能性电刺激
光电子学
医学
化学
工程类
结构工程
物理
量子力学
内科学
病理
物理化学
替代医学
作者
Ramin Soltanzadeh,Elnaz Afsharipour,Cyrus Shafai
摘要
Abstract This paper investigates microneedle array electrodes for transcutaneous electrical nerve stimulation, and compares their performance with conventional surface electrodes. A three‐dimensional model of tissue was developed for finite element multiphysics simulations. Investigations included current density in different depths of a tissue, space constant under electrodes, specific absorption ratio of tissue, selectivity of stimulation, temperature rise, and blood flow. Results showed that microneedle electrodes have up to 10% higher selectivity than the surface electrodes. Furthermore, it was found that stimulation using microneedle electrodes provides more robust current density at different tissue depths compared to the surface electrode stimulation. Microneedle electrodes showed enhanced stimulation parameters, particularly for targeting a specific nerve in a specific depth of a tissue.
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