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一种基于薄膜近似的用于细胞外动作电位微电极阵列记录的新型三维有限元模型。

A new 3-D finite-element model based on thin-film approximation for microelectrode array recording of extracellular action potential.

作者信息

Moulin Céline, Glière Alain, Barbier Daniel, Joucla Sebastien, Yvert Blaise, Mailley Pascal, Guillemaud Régis

机构信息

LETI-CEA Recherche Technologique, Grenoble 38054, France.

出版信息

IEEE Trans Biomed Eng. 2008 Feb;55(2 Pt 1):683-92. doi: 10.1109/TBME.2007.903522.

Abstract

A transient finite-element model has been developed to simulate an extracellular action potential recording in a tissue slice by a planar microelectrode array. The thin-film approximation of the active neuron membrane allows the simulation within single finite-element software of the intracellular and extracellular potential fields. In comparison with a compartmental neuron model, it is shown that the thin-film approximation-based model is able to properly represent the neuron bioelectrical behavior in terms of transmembrane current and potential. Moreover, the model is able to simulate extracellular action potential recordings with properties similar to those observed in biological experiments. It is demonstrated that an ideal measurement system model can be used to represent the recording microelectrode, provided that the electronic recording system adapts to the electrode-tissue interface impedance. By comparing it with a point source approximated neuron, it is also shown that the neuron three-dimensional volume should be taken into account to simulate the extracellular action potential recording. Finally, the influence of the electrode size on the signal amplitude is evaluated. This parameter, together with the microelectrode noise, should be taken into account in order to optimize future microelectrode designs in terms of the signal-to-noise ratio.

摘要

已开发出一种瞬态有限元模型,用于模拟平面微电极阵列在组织切片中记录细胞外动作电位的过程。活性神经元膜的薄膜近似法使得能够在单一有限元软件中模拟细胞内和细胞外电位场。与房室神经元模型相比,结果表明基于薄膜近似法的模型能够在跨膜电流和电位方面正确地呈现神经元的生物电行为。此外,该模型能够模拟出具有与生物实验中观察到的特性相似的细胞外动作电位记录。结果表明,只要电子记录系统适应电极 - 组织界面阻抗,理想的测量系统模型就可用于表示记录微电极。通过将其与点源近似神经元进行比较,还表明在模拟细胞外动作电位记录时应考虑神经元的三维体积。最后,评估了电极尺寸对信号幅度的影响。为了在信噪比方面优化未来的微电极设计,应考虑该参数以及微电极噪声。

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