首页> 外文会议> >VLSI Implementation of a Nonlinear Neuronal Model: A 'Neural Prosthesis' to Restore Hippocampal Trisynaptic Dynamics
【24h】

VLSI Implementation of a Nonlinear Neuronal Model: A 'Neural Prosthesis' to Restore Hippocampal Trisynaptic Dynamics

机译:非线性神经元模型的VLSI实现:用于恢复海马三突触动力学的“神经假体”

获取原文

摘要

We are developing a biomimetic electronic neural prosthesis to replace regions of the hippocampal brain area that have been damaged by disease or insult. We have used the hippocampal slice preparation as the first step in developing such a prosthesis. The major intrinsic circuitry of the hippocampus consists of an excitatory cascade involving the dentate gyrus (DG), CA3, and CA1 subregions; this trisynaptic circuit can be maintained in a transverse slice preparation. Our demonstration of a neural prosthesis for the hippocampal slice involves: (i) surgically removing CA3 function from the trisynaptic circuit by transecting CA3 axons, (ii) replacing biological CA3 function with a hardware VLSI (very large scale integration) model of the nonlinear dynamics of CA3, and (iii) through a specially designed multi-site electrode array, transmitting DG output to the hardware device, and routing the hardware device output to the synaptic inputs of the CA1 subregion, thus by-passing the damaged CA3. Field EPSPs were recorded from the CA1 dendritic zone in intact slices and "hybrid" DG-VLSI-CA1 slices. Results show excellent agreement between data from intact slices and transected slices with the hardware-substituted CA3: propagation of temporal patterns of activity from DGrarrVLSIrarrCA1 reproduces that observed experimentally in the biological DGrarrCA3rarrCA1 circuit
机译:我们正在开发一种仿生电子神经假体,以替代因疾病或侮辱而受损的海马脑区域。我们已经将海马切片制剂用作开发这种假体的第一步。海马的主要内在电路由涉及齿状回(DG),CA3和CA1子区域的兴奋级联组成。该三突触回路可以在横向切片准备中维持。我们对海马切片神经假体的演示涉及:(i)通过横切CA3轴突从外科手术中去除三突触回路中的CA3功能,(ii)用非线性动力学的硬件VLSI(超大规模集成)模型代替生物CA3功能。 (3)通过专门设计的多站点电极阵列,将DG输出传输到硬件设备,并将硬件设备输出路由到CA1子区域的突触输入,从而绕过损坏的CA3。在完整切片和“混合” DG-VLSI-CA1切片中,从CA1树突区域记录了现场EPSP。结果表明,完整切片和横切切片的数据与硬件替换的CA3之间具有极好的一致性:来自DGrarrVLSIrarrCA1的活动的时间模式的传播复制了在生物DGrarrCA3rarrCA1电路中实验观察到的结果

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