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皮层驱动的即刻早期基因表达反映了松鼠猴感觉运动皮层对已确定的纹状体神经元的模块化影响。

Cortically driven immediate-early gene expression reflects modular influence of sensorimotor cortex on identified striatal neurons in the squirrel monkey.

作者信息

Parthasarathy H B, Graybiel A M

机构信息

Department of Brain and Cognitive Sciences, Massachusetts Institute of Technology, Cambridge, Massachusetts 02139, USA.

出版信息

J Neurosci. 1997 Apr 1;17(7):2477-91. doi: 10.1523/JNEUROSCI.17-07-02477.1997.

Abstract

Current understanding of basal ganglia function emphasizes their involvement in the focal, context-dependent release of motor and cognitive circuits in the brainstem and frontal lobes. How such selective action can arise despite the existence of massively convergent inputs from the cerebral cortex is unknown. However, anatomical work has suggested that specificity could be achieved in corticostriatal circuits by modular patterns of convergent and divergent cortical inputs to striatal projection neurons. To test for such modular activation of striatal neurons, we electrically microstimulated physiologically identified sites in the primary somatosensory (SI) and primary motor (MI) cortex of the squirrel monkey. We compared the efferent fiber distributions anterogradely traced from these sites to the distributions of striatal neurons activated by microstimulation to express Fos- and Jun B-like immediate-early gene proteins. We show that the microstimulation of sensorimotor cortex induces Fos and Jun B expression in localized cell clusters in the putamen and that these clusters match the anatomical input fiber clusters (matrisomes). The modular activation of striatal neurons by sensorimotor cortex seems likely. Unexpectedly, >75% of the Fos-positive nuclei in densely labeled cell clusters were in enkephalin-immunoreactive neurons. This expression pattern suggests that the primate sensorimotor cortex exerts a differential influence on the enkephalinergic (indirect pathway) as opposed to the substance P/dynorphin (direct pathway) projection neurons of the putamen. The densely labeled clusters of Fos-labeled enkephalinergic neurons occurred within larger zones containing sparsely distributed Fos-labeled parvalbumin neurons. Moreover, when the cortical stimulation induced expression of Fos-like protein only in sparsely distributed neurons, almost every putamenal neuron expressing Fos was a parvalbumin-containing (GABAergic) interneuron. These patterns suggest a model in which the primate sensorimotor cortex can target parvalbumin-containing inhibitory interneurons, which in turn depress the remaining neuronal activity within and around matrisomes in a feed-forward manner until sufficient coherent cortical input can overcome the inhibition to influence selectively enkephalinergic projection neurons in the activated matrisomes. Tuning of cortical input by striatal interneurons thus may be an important mechanism by which broader anatomical connections are dynamically adjusted to achieve selective flow of information through the basal ganglia.

摘要

目前对基底神经节功能的理解强调它们参与脑干和额叶中运动和认知回路的局部、情境依赖性释放。尽管存在来自大脑皮层的大量汇聚输入,但这种选择性作用是如何产生的尚不清楚。然而,解剖学研究表明,通过向纹状体投射神经元的汇聚和发散皮质输入的模块化模式,可以在皮质纹状体回路中实现特异性。为了测试纹状体神经元的这种模块化激活,我们对松鼠猴的初级体感(SI)和初级运动(MI)皮层中生理上确定的位点进行了电微刺激。我们比较了从这些位点顺行追踪的传出纤维分布与微刺激激活的纹状体神经元的分布,以表达Fos和Jun B样即刻早期基因蛋白。我们发现,感觉运动皮层的微刺激在壳核中的局部细胞簇中诱导Fos和Jun B表达,并且这些簇与解剖学输入纤维簇(基质体)相匹配。感觉运动皮层对纹状体神经元的模块化激活似乎是可能的。出乎意料的是,在密集标记的细胞簇中,超过75%的Fos阳性核存在于脑啡肽免疫反应性神经元中。这种表达模式表明,灵长类动物的感觉运动皮层对壳核中脑啡肽能(间接通路)与P物质/强啡肽(直接通路)投射神经元产生不同的影响。密集标记的Fos标记脑啡肽能神经元簇出现在含有稀疏分布的Fos标记小白蛋白神经元的较大区域内。此外,当皮质刺激仅在稀疏分布的神经元中诱导Fos样蛋白表达时,几乎每个表达Fos的壳核神经元都是含小白蛋白的(GABA能)中间神经元。这些模式提示了一种模型,其中灵长类动物的感觉运动皮层可以靶向含小白蛋白的抑制性中间神经元,这些中间神经元进而以前馈方式抑制基质体及其周围的其余神经元活动,直到足够连贯的皮质输入能够克服抑制作用,以选择性地影响激活的基质体中的脑啡肽能投射神经元。因此,纹状体中间神经元对皮质输入的调节可能是一种重要机制,通过该机制可以动态调整更广泛的解剖连接,以实现信息通过基底神经节的选择性流动。

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