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大鼠纹状体在自然行为过程中纹状体小体和基质区室的差异代谢活性。

Differential metabolic activity in the striosome and matrix compartments of the rat striatum during natural behaviors.

作者信息

Brown Lucy L, Feldman Samuel M, Smith Diane M, Cavanaugh James R, Ackermann Robert F, Graybiel Ann M

机构信息

Department of Neurology and Neuroscience, Albert Einstein College of Medicine, Bronx, New York 10461, USA.

出版信息

J Neurosci. 2002 Jan 1;22(1):305-14. doi: 10.1523/JNEUROSCI.22-01-00305.2002.

Abstract

The striosome and matrix compartments of the striatum are clearly identified by their neurochemical expression patterns and anatomical connections. To determine whether these compartments are distinguishable functionally, we used [14C]deoxyglucose metabolic mapping in the rat and tested whether neutral behavioral states (free movement, gentle restraint, and focal tactile stimulation under gentle restraint) were associated with regions of high metabolic activity in the matrix, in striosomes, or in both. We identified metabolic peaks in the striatum by means of image analysis, striosome-matrix boundaries by [3H]naloxone binding, and primary somatosensory corticostriatal input clusters by injections of anterograde tracer into electrophysiologically identified sites in SI. Peak metabolic activity was primarily confined to the matrix compartment under each behavioral condition. These findings show that during relatively neutral behavioral conditions the balance of activity between the two compartments favors the matrix and suggest that this balance is present in the striatum as part of normal behavior and processing of afferent activity.

摘要

纹状体的纹状小体和基质区室可通过它们的神经化学表达模式和解剖学连接清晰地识别出来。为了确定这些区室在功能上是否可区分,我们在大鼠中使用了[14C]脱氧葡萄糖代谢图谱,并测试了中性行为状态(自由活动、轻度束缚以及轻度束缚下的局部触觉刺激)是否与基质、纹状小体或两者中高代谢活性区域相关。我们通过图像分析确定纹状体中的代谢峰值,通过[3H]纳洛酮结合确定纹状小体 - 基质边界,并通过将顺行示踪剂注射到体感皮层(SI)中经电生理鉴定的部位来确定初级体感皮质 - 纹状体输入簇。在每种行为条件下,峰值代谢活性主要局限于基质区室。这些发现表明,在相对中性的行为条件下,两个区室之间的活动平衡有利于基质,并表明这种平衡作为正常行为和传入活动处理的一部分存在于纹状体中。

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