首页> 外文会议>Engineering in Medicine and Biology Society, 2001. Proceedings of the 23rd Annual International Conference of the IEEE >Model-based design of stimulus trains for selective microstimulation of targeted neuronal populations
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Model-based design of stimulus trains for selective microstimulation of targeted neuronal populations

机译:基于模型的刺激神经细胞设计,可选择性地对目标神经元群体进行微刺激

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Selective activation of targeted neuronal populations is required for central nervous system (CNS) neuroprosthetic device efficacy. However in many regions of the CNS, cells and fibers of passages are intermingled. The goal of this project was to design stimulus trains that would enhance selectivity between microstimulation of cells and fibers of passage. Detailed computer-based models were developed that accurately reproduced the dynamic firing properties of mammalian neurons. The neuron models were coupled to a three-dimensional finite element model of the spinal cord that solved for the potentials generated in the tissue medium by an extracellular electrode. The results demonstrate that alterations in the stimulus frequency, based on differences in the post-action-potential recovery cycles of cells and axons, enabled differential activation of cells or fibers of passage. The results also show that asymmetrical charge-balanced biphasic stimulus waveforms, designed to exploit the non-linear conductance properties of the neural elements, can be used in combination with the appropriate stimulus frequency to further enhance selectivity. These outcomes provide useful tools for selective stimulation of the CNS, as well as basis for understanding frequency-dependent outputs during CNS stimulation.
机译:目标神经元群体的选择性激活是中枢神经系统(CNS)神经修复设备功效所必需的。但是,在中枢神经系统的许多区域中,通道的细胞和纤维混杂在一起。该项目的目的是设计刺激训练,以增强细胞和通道纤维的微刺激之间的选择性。开发了详细的基于计算机的模型,可以精确地再现哺乳动物神经元的动态放电特性。将神经元模型与脊髓的三维有限元模型耦合,该模型可以解决细胞外电极在组织介质中产生的电势。结果表明,基于细胞和轴突的后动作电位恢复周期的差异,刺激频率的改变使得细胞或传代纤维的差异性激活成为可能。结果还表明,旨在利用神经元的非线性电导特性的非对称电荷平衡双相刺激波形可以与适当的刺激频率结合使用,以进一步提高选择性。这些结果为选择性刺激中枢神经系统提供了有用的工具,以及了解中枢神经系统刺激过程中与频率相关的输出的基础。

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