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Effect of Anatomically Realistic Full-Head Model on Activation of Cortical Neurons in Subdural Cortical Stimulation—A Computational Study

机译:解剖学逼真的全头模型对皮层神经元的激活硬膜下皮层刺激-A计算研究

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Electrical brain stimulation (EBS) is an emerging therapy for the treatment of neurological disorders, and computational modeling studies of EBS have been used to determine the optimal parameters for highly cost-effective electrotherapy. Recent notable growth in computing capability has enabled researchers to consider an anatomically realistic head model that represents the full head and complex geometry of the brain rather than the previous simplified partial head model (extruded slab) that represents only the precentral gyrus. In this work, subdural cortical stimulation (SuCS) was found to offer a better understanding of the differential activation of cortical neurons in the anatomically realistic full-head model than in the simplified partial-head models. We observed that layer 3 pyramidal neurons had comparable stimulation thresholds in both head models, while layer 5 pyramidal neurons showed a notable discrepancy between the models; in particular, layer 5 pyramidal neurons demonstrated asymmetry in the thresholds and action potential initiation sites in the anatomically realistic full-head model. Overall, the anatomically realistic full-head model may offer a better understanding of layer 5 pyramidal neuronal responses. Accordingly, the effects of using the realistic full-head model in SuCS are compelling in computational modeling studies, even though this modeling requires substantially more effort.
机译:电脑刺激(EBS)是治疗神经系统疾病的新出现治疗,EBS的计算建模研究已被用于确定高度成本效率的电疗的最佳参数。最近的计算能力的显着增长使研究人员能够考虑一个解剖学现实的头部模型,该头部模型代表大脑的全头和复杂几何形状,而不是以前代表前术回谱的先前简化的部分头模型(挤出板)。在这项工作中,发现软骨皮质刺激(SUCS)在解剖学上现实的全头模型中更好地了解皮质神经元的差异激活而不是简化的部分头模型。我们观察到层3层金字塔神经元在两个头部模型中具有相当的刺激阈值,而第5层金字塔神经元在模型之间显示出显着的差异;特别地,层5层锥形神经元在解剖学现实的全头模型中阈值和动作潜在启动位点的不对称性。总的来说,解剖学现实的全头模型可以更好地理解第5层金字塔神经元反应。因此,即使这种建模需要大量努力,使用SUCS中使用逼真的全头模型的效果在计算建模研究中是引人注目的。

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