首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Propagation of epileptiform activity can be independent of synaptic transmission, gap junctions, or diffusion and is consistent with electrical field transmission
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Propagation of epileptiform activity can be independent of synaptic transmission, gap junctions, or diffusion and is consistent with electrical field transmission

机译:癫痫样活动的传播可以独立于突触传递,间隙连接或扩散,并且与电场传递一致

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The propagation of activity in neural tissue is generally associated with synaptic transmission, but epileptiform activity in the hippocampus can propagate with or without synaptic transmission at a speed of ~0.1 m/s. This suggests an underlying common nonsynaptic mechanism for propagation. To study this mechanism, we developed a novel unfolded hippocampus preparation, from CD1 mice of either sex, which preserves the transverse and longitudinal connections and recorded activity with a penetrating microelectrode array. Experiments using synaptic transmission and gap junction blockers indicated that longitudinal propagation is independent of chemical or electrical synaptic transmission. Propagation speeds of 0.1 m/s are not compatible with ionic diffusion or pure axonal conduction. The only other means of communication between neurons is through electric fields. Computer simulations revealed that activity can indeed propagate from cell to cell solely through field effects. These results point to an unexpected propagation mechanism for neural activity in the hippocampus involving endogenous field effect transmission.
机译:活动在神经组织中的传播通常与突触传递有关,但海马中的癫痫样活动可以在有或没有突触传递的情况下以〜0.1 m / s的速度传播。这表明潜在的常见的非突触传播机制。为了研究这种机制,我们从任何性别的CD1小鼠中开发了一种新型的未折叠海马制剂,该制剂保留了横向和纵向连接并通过穿透性微电极阵列记录了活动。使用突触传递和间隙连接阻滞剂的实验表明,纵向传播与化学或电气突触传递无关。 0.1 m / s的传播速度与离子扩散或纯轴突传导不兼容。神经元之间唯一的其他通信方式是通过电场。计算机模拟表明,活性确实可以仅通过场效应在细胞之间传播。这些结果指出了涉及内源性场效应传递的海马神经活动的意外传播机制。

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