Panskus Raphael, Holzapfel Lukas, Serdijn Wouter A, Giagka Vasiliki
Annu Int Conf IEEE Eng Med Biol Soc. 2023 Jul;2023:1-5. doi: 10.1109/EMBC40787.2023.10341179.
Recording neuronal activity triggered by electrical impulses is a powerful tool in neuroscience research and neural engineering. It is often applied in acute electrophysiological experimental settings to record compound nerve action potentials. However, the elicited neural response is often distorted by electrical stimulus artifacts, complicating subsequent analysis. In this work, we present a model to better understand the effect of the selected amplifier configuration and the location of the ground electrode in a practical electrophysiological nerve setup. Simulation results show that the stimulus artifact can be reduced by more than an order of magnitude if the placement of the ground electrode, its impedance, and the amplifier configuration are optimized. We experimentally demonstrate the effects in three different settings, in-vivo and in-vitro.
记录由电脉冲触发的神经元活动是神经科学研究和神经工程中的一种强大工具。它常用于急性电生理实验环境中记录复合神经动作电位。然而,诱发的神经反应常常被电刺激伪迹扭曲,使后续分析变得复杂。在这项工作中,我们提出了一个模型,以更好地理解在实际电生理神经设置中所选放大器配置和接地电极位置的影响。仿真结果表明,如果优化接地电极的放置、其阻抗和放大器配置,刺激伪迹可以减少一个数量级以上。我们在体内和体外三种不同的设置中通过实验证明了这些影响。