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抑制性和兴奋性连接构成的空间结构化网络引导着杏仁核外侧的冲动传递。

A spatially structured network of inhibitory and excitatory connections directs impulse traffic within the lateral amygdala.

作者信息

Samson R D, Paré D

机构信息

Center for Molecular and Behavioral Neuroscience, Rutgers State University, The State University of New Jersey, 197 University Avenue, Newark, NJ 07102, USA.

出版信息

Neuroscience. 2006 Sep 1;141(3):1599-609. doi: 10.1016/j.neuroscience.2006.04.077. Epub 2006 Jun 6.

Abstract

The lateral nucleus of the amygdala is the entry point of most sensory inputs into the amygdala. However, the way information is processed and distributed within the lateral nucleus still eludes us. To gain some insight into this issue, we have examined the spatial organization of excitatory and inhibitory connections in the lateral nucleus. To this end, we performed whole-cell recordings of principal lateral amygdala neurons and studied their responses to local pressure applications of glutamate in coronal and horizontal slices of the guinea-pig amygdala. In coronal sections, glutamate puffs performed at a distance from the recorded cells usually evoked inhibitory responses, except when the recorded neuron was adjacent to the external capsule, in which case excitatory responses could be evoked from ejection sites along the external capsule. In contrast, glutamate puffs evoked a mixture of excitatory and inhibitory responses in horizontal slices. Excitatory responses were generally evoked from stimulation sites located lateral to the recorded cell whereas inhibitory responses were commonly elicited from medial stimulation sites, irrespective of their rostrocaudal position. These findings confirm and extend previous tract-tracing studies where it was found that intrinsic connections within the lateral amygdala prevalently run in the dorsoventral and lateromedial directions. However, our results also reveal a hitherto unsuspected level of spatial heterogeneity in the intrinsic circuit of the lateral amygdala. The prevalence of excitatory responses in horizontal slices coupled to the ubiquity of inhibitory responses in coronal slices suggest that the lateral amygdala network is designed to allow associative interactions within the rostrocaudal plane while preventing runaway excitation locally.

摘要

杏仁核外侧核是大多数感觉输入进入杏仁核的切入点。然而,信息在外侧核内的处理和分布方式仍不为人所知。为了深入了解这个问题,我们研究了外侧核内兴奋性和抑制性连接的空间组织。为此,我们对豚鼠杏仁核冠状切片和水平切片中的外侧杏仁核主要神经元进行了全细胞记录,并研究了它们对局部施加谷氨酸的反应。在冠状切片中,在远离记录细胞的位置进行谷氨酸微喷射通常会诱发抑制性反应,除非记录的神经元与外囊相邻,在这种情况下,沿着外囊的喷射位点可以诱发兴奋性反应。相比之下,谷氨酸微喷射在水平切片中诱发了兴奋性和抑制性反应的混合。兴奋性反应通常从记录细胞外侧的刺激位点诱发,而抑制性反应通常从中部刺激位点诱发,与它们的前后位置无关。这些发现证实并扩展了先前的束路追踪研究,该研究发现外侧杏仁核内的内在连接主要在背腹和内外侧方向运行。然而,我们的结果也揭示了外侧杏仁核内在回路中迄今为止未被怀疑的空间异质性水平。水平切片中兴奋性反应的普遍性与冠状切片中抑制性反应的普遍性相结合,表明外侧杏仁核网络的设计目的是允许在前后平面内进行联想交互,同时在局部防止失控的兴奋。

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