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The Virtual Electrode Recording Tool for EXtracellular Potentials (VERTEX) Version 2.0: Modelling in vitro electrical stimulation of brain tissue

机译:用于细胞外电位的虚拟电极记录工具(VERTEX)版本2.0:对脑组织的体外电刺激进行建模

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摘要

Neuronal circuits can be modelled in detail allowing us to predict the effects of stimulation on individual neurons. Electrical stimulation of neuronal circuits in vitro and in vivo excites a range of neurons within the tissue and measurements of neural activity, e.g the local field potential (LFP), are again an aggregate of a large pool of cells. The previous version of our Virtual Electrode Recording Tool for EXtracellular Potentials (VERTEX) allowed for the simulation of the LFP generated by a patch of brain tissue. Here, we extend VERTEX to simulate the effect of electrical stimulation through a focal electric field. We observe both direct changes in neural activity and changes in synaptic plasticity. Testing our software in a model of a rat neocortical slice, we determine the currents contributing to the LFP, the effects of paired pulse stimulation to induce short term plasticity (STP), and the effect of theta burst stimulation (TBS) to induce long term potentiation (LTP).
机译:可以对神经元回路进行详细建模,使我们能够预测刺激对单个神经元的影响。体外和体内对神经元回路的电刺激会刺激组织内的一系列神经元,并且神经活动的测量值(例如局部场电位(LFP))再次是大量细胞的集合体。我们的用于细胞外电位的虚拟电极记录工具(VERTEX)的先前版本允许模拟由脑组织补丁生成的LFP。在这里,我们扩展VERTEX以模拟通过聚焦电场的电刺激效果。我们观察到神经活动的直接变化和突触可塑性的变化。在大鼠新皮层切片模型中测试我们的软件,我们确定导致LFP的电流,成对脉冲刺激诱导短期可塑性(STP)的作用以及theta爆发刺激(TBS)诱导长期的作用增强(LTP)。

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