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Focal cortical seizures start as standing waves and propagate respecting homotopic connectivity

机译:局灶性皮质癫痫发作始于驻波并在尊重同位点连接的情况下传播

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摘要

Focal epilepsy involves excessive cortical activity that propagates both locally and distally. Does this propagation follow the same routes as normal cortical activity? We pharmacologically induced focal seizures in primary visual cortex (V1) of awake mice, and compared their propagation to the retinotopic organization of V1 and higher visual areas. We used simultaneous local field potential recordings and widefield imaging of a genetically encoded calcium indicator to measure prolonged seizures (ictal events) and brief interictal events. Both types of event are orders of magnitude larger than normal visual responses, and both start as standing waves: synchronous elevated activity in the V1 focus and in homotopic locations in higher areas, i.e. locations with matching retinotopic preference. Following this common beginning, however, seizures persist and propagate both locally and into homotopic distal regions, and eventually invade all of visual cortex and beyond. We conclude that seizure initiation resembles the initiation of interictal events, and seizure propagation respects the connectivity underlying normal visual processing.
机译:局灶性癫痫涉及过度的皮质活动,其在局部和向远端传播。这种繁殖是否遵循与正常皮层活动相同的途径?我们在清醒小鼠的初级视觉皮层(V1)中药理诱导局灶性癫痫发作,并将其传播与V1和更高视域的视网膜组织相比较。我们使用基因编码的钙指示剂同时进行局部场电势记录和宽场成像,以测量长期发作(发作事件)和短暂发作事件。两种类型的事件都比正常的视觉响应大几个数量级,并且都以驻波形式开始:V1焦点和较高区域中同位点(即具有相同视网膜视位偏爱的位置)的同步活动增强。然而,在这个共同的开始之后,癫痫发作持续存在并在局部和同位远端区域传播,并最终侵入所有视觉皮层及其他区域。我们得出的结论是,癫痫发作的发作类似于发作间期的发作,并且癫痫发作的传播尊重了正常视觉处理的连通性。

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