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柱状活动支持大鼠内嗅皮层切片中群体爆发的传播。

Columnar activity supports propagation of population bursts in slices of rat entorhinal cortex.

作者信息

Stewart M

机构信息

Department of Physiology and Pharmacology, Box 31, State University of New York Health Science Center at Brooklyn, 450 Clarkson Avenue, Brooklyn, NY, 11203, USA.

出版信息

Brain Res. 1999 Jun 5;830(2):274-84. doi: 10.1016/s0006-8993(99)01404-3.

Abstract

Population bursts including epileptiform spikes and sharp waves can be generated in and propagate through the retrohippocampal cortices. The propagation of these events within the entorhinal cortex was studied with field potential recordings in horizontal slices from rat brain. Population bursts were elicited by repetitive extracellular stimuli in normal media. Transections of particular laminae and microknife cuts parallel to the pial surface were used to interrupt propagation or to isolate potential pathways. Population spikes were not found to propagate more than 0.5 mm in either superficial (layers I-III) or deep (layers V-VI) strips of tissue formed by cuts along layer IV. Events propagated over 2 mm when 'columnar' connectivity was intact. Population spikes propagated past microknife cuts which started at the pial surface and sectioned layers I-IV. Population spikes also propagated past microknife cuts which sectioned the angular bundle and layers V-VI. When deep layer cuts included layer IV, horizontal propagation of population spikes was blocked. Cuts running approximately in layer IV diminished the amplitude and duration of population events recorded in layers II and V (above and below the cut, respectively) and eliminated a high frequency oscillation which occurred during the burst event. It is concluded that superficial and deep layer neurons interact during propagation of population events in entorhinal cortex and that this 'columnar' activity: (a) intensifies the excitatory activity of superficial and deep layer neurons; and (b) provides multiple paths for the spread of activity from column to column within the entorhinal cortex.

摘要

包括癫痫样棘波和尖波在内的群体爆发可在海马旁回皮质中产生并传播。利用大鼠脑水平切片的场电位记录研究了这些事件在内嗅皮质内的传播。在正常培养基中通过重复的细胞外刺激诱发群体爆发。通过对特定层的横切和与软脑膜表面平行的微刀切割来中断传播或分离潜在通路。发现在沿IV层切割形成的浅表层(I-III层)或深层(V-VI层)组织条带中,群体峰电位传播不超过0.5毫米。当“柱状”连接完整时,事件传播超过2毫米。群体峰电位传播通过从软脑膜表面开始并切割I-IV层的微刀切口。群体峰电位也传播通过切割角束和V-VI层的微刀切口。当深层切割包括IV层时,群体峰电位的水平传播被阻断。大致在IV层的切割降低了在II层和V层(分别在切口上方和下方)记录的群体事件的幅度和持续时间,并消除了爆发事件期间出现的高频振荡。得出的结论是,在群体事件在内嗅皮质传播过程中,浅层和深层神经元相互作用,并且这种“柱状”活动:(a)增强了浅层和深层神经元的兴奋性活动;(b)为内嗅皮质内从柱状结构到柱状结构的活动传播提供了多条路径。

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