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大鼠视觉皮层内前馈和反馈通路中的突触活动模式。

Patterns of synaptic activity in forward and feedback pathways within rat visual cortex.

作者信息

Domenici L, Harding G W, Burkhalter A

机构信息

Department of Anatomy and Neurobiology, Washington University School of Medicine, St. Louis, Missouri 63110, USA.

出版信息

J Neurophysiol. 1995 Dec;74(6):2649-64. doi: 10.1152/jn.1995.74.6.2649.

Abstract
  1. The laminar and temporal distribution of synaptic activity supplied by forward and feedback connections between different areas of rat visual cortex was determined with the use of current source density (CSD) analysis in in vitro slices. In forward connections, synaptic potentials were evoked by electrically stimulating area 17 and recording in the extrastriate area LM (lateromedial), that ranks at the second hierarchical level, one step above primary visual cortex. For activating feedback connections, the location of stimulating and recording electrodes was reversed. 2. The synaptic interactions in reciprocal intracortical circuits are excitatory, and they are mediated through glutamate receptors that are blocked by kynurenic acid. 3. Forward connections from area 17 to area LM provide input to all layers including a strong input to layer 4. In contrast, feedback input to layer 4 is weak and is mainly directed to superficial and deep layers. This laminar distribution closely resembles that seen anatomically. 4. Both forward and feedback connections evoke distinct temporal patterns of synaptic activation in different layers. Although onset and peak latencies are slightly shorter in the forward than in the feedback pathway, the difference is not statistically significant. 5. The spatiotemporal distribution of synaptic activation by forward connections resembles the pattern evoked by geniculocortical inputs. Feedback connections show greater similarities to long-range connections within area 17, although they are not identical. Our results support the notion derived from anatomic and in vivo physiological studies that forward and feedback pathways belong to functionally distinct cortical circuits.
摘要
  1. 利用离体脑片的电流源密度(CSD)分析方法,确定了大鼠视觉皮层不同区域之间前馈和反馈连接所提供的突触活动的层流和时间分布。在前馈连接中,通过电刺激17区并在纹外区LM(内外侧)记录来诱发突触电位,LM区处于第二层级,比初级视觉皮层高一级。为了激活反馈连接,刺激电极和记录电极的位置互换。2. 皮质内相互连接回路中的突触相互作用是兴奋性的,它们通过被犬尿氨酸阻断的谷氨酸受体介导。3. 从17区到LM区的前馈连接为所有层提供输入,包括对第4层的强输入。相比之下,对第4层的反馈输入较弱,主要针对浅层和深层。这种层流分布与解剖学上所见的非常相似。4. 前馈和反馈连接在不同层中都引发了不同的突触激活时间模式。尽管前馈通路中的起始和峰值潜伏期比反馈通路略短,但差异无统计学意义。5. 前馈连接引起的突触激活的时空分布类似于膝状体皮质输入所引发的模式。反馈连接与17区内的长程连接表现出更大的相似性,尽管它们并不完全相同。我们的结果支持了来自解剖学和体内生理学研究的观点,即前馈和反馈通路属于功能上不同的皮质回路。

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