首页> 外文期刊>Journal of neural engineering >Computational Modeling Of Epidural Cortical Stimulation
【24h】

Computational Modeling Of Epidural Cortical Stimulation

机译:硬膜外皮层刺激的计算模型

获取原文
获取原文并翻译 | 示例

摘要

Epidural cortical stimulation (ECS) is a developing therapy to treat neurological disorders. However, it is not clear how the cortical anatomy or the polarity and position of the electrode affects current flow and neural activation in the cortex. We developed a 3D computational model simulating ECS over the precentral gyrus. With the electrode placed directly above the gyrus, about half of the stimulus current flowed through the crown of the gyrus while current density was low along the banks deep in the sulci. Beneath the electrode, neurons oriented perpendicular to the cortical surface were depolarized by anodic stimulation, and neurons oriented parallel to the boundary were depolarized by cathodic stimulation. Activation was localized to the crown of the gyrus, and neurons on the banks deep in the sulci were not polarized. During regulated voltage stimulation, the magnitude of the activating function was inversely proportional to the thickness of the CSF and dura. During regulated current stimulation, the activating function was not sensitive to the thickness of the dura but was slightly more sensitive than during regulated voltage stimulation to the thickness of the CSF. Varying the width of the gyrus and the position of the electrode altered the distribution of the activating function due to changes in the orientation of the neurons beneath the electrode. Bipolar stimulation, although often used in clinical practice, reduced spatial selectivity as well as selectivity for neuron orientation.
机译:硬膜外皮层刺激(ECS)是一种正在发展的治疗神经系统疾病的疗法。然而,尚不清楚皮质的解剖结构或电极的极性和位置如何影响皮质中的电流和神经激活。我们开发了一个3D计算模型,用于模拟中央前回上的ECS。将电极放置在回旋的正上方,大约一半的刺激电流流经回旋的冠状,而沿苏尔沟深处的堤岸电流密度较低。在电极下,垂直于皮质表面定向的神经元通过阳极刺激去极化,而平行于边界定向的神经元通过阴极刺激而去极化。激活被定位在回旋的冠状,而在沟内深处的神经元未极化。在调节电压刺激期间,激活功能的大小与CSF和硬脑膜的厚度成反比。在调节电流刺激期间,激活功能对硬脑膜的厚度不敏感,但比对CSF厚度进行调节电压刺激期间的敏感度稍高。由于电极下方神经元取向的变化,改变回旋的宽度和电极的位置改变了激活功能的分布。尽管在临床实践中经常使用双极刺激,但是降低了空间选择性以及对神经元定向的选择性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号