二氧化硅气凝胶基质上神经细胞生长的电刺激数值研究

Sakib Al Soyeb, B. Morshed, F. Sabri
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引用次数: 0

摘要

一种具有电刺激能力的基于气凝胶的神经元印刷电路板(NPCB)目前正在研究中,作为修复周围神经损伤的替代方法。在这里,我们报告了由这种浅表电刺激引起的电场分布、流体运动和温升的数值分析结果。在本分析中,使用COMSOL有限元分析软件对圆柱形气凝胶结构进行了电压和电流刺激建模。对尺寸为20×2×0.2 mm3的一对或单个金轨道电极施加100mv电压激励和0.1 ~ 1a电流激励。模拟结果表明,电场线高度集中在金迹存在的气凝胶表面。此外,刺激产生流体运动,当电流刺激小于0.35 A时,刺激引起的稳态温升小于1K。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Numerical study of electrical stimulation for neuronal cell growth on silica aerogel substrate
An aerogel-based Neuronal Printed Circuit Board (NPCB) with electrical stimulation capabilities is currently under investigation as an alternative method for repair of injury sustained to peripheral nerves. Here, we report the results of the numerical analysis of electric field distribution, fluidic motion, and temperature rise due to such superficial electrical stimuli. In this analysis, a cylindrical aerogel structure is modeled for both voltage and current stimulation using COMSOL finite element analysis software. Voltage excitation of 100 mV and current excitations of 0.1 to 1 A are applied to a pair or a single electrode of gold track with dimension of 20×2×0.2 mm3. Simulation results demonstrate that electric field lines are highly concentrated on the surface of the aerogel where the gold tracks exist. Besides, the stimulation generates fluidic motion, and the steady state temperature increase due to the stimulation is less than 1K for current stimulation of less than 0.35 A.
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