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前脑神经元的自发放电模式。III. 单侧丘脑损伤对尾状核神经元放电率诱导不对称性的预防。

The spontaneous firing patterns of forebrain neurons. III. Prevention of induced asymmetries in caudate neuronal firing rates by unilateral thalamic lesions.

作者信息

Levine M S, Hull C D, Buchwald N A, Garcia-Rill E, Heller A, Erinoff L

出版信息

Brain Res. 1977 Aug 12;131(2):215-25. doi: 10.1016/0006-8993(77)90516-9.

Abstract

Unilateral lesions interrupting striatal outputs and inputs (MFB lesions) produce a marked slowing of neuronal firing in the caudate nucleus contralateral to the side of the lesions without affecting neuronal firing in the ipsilateral caudate nucleus. Although the MFB lesion also interrupts the nigrostriatal pathway and depletes the ipsilateral striatum of dipamine and its associated enzymes, the slowing of unit firing rates is apparently due to interruption of striatal outputs rather than inputs. Unilateral thalamic lesions palced ipsilateral to MFB lesions in iether the ventral anterior-ventrolateral nuclei (VA-VL) or in the center median-parafascicular nuclei (CM-PF) prevent the MFB lesion-induced asymmetry in caudate neuronal firing rates. These thalamic lesions do not, however, restore the striatal dopamine content depleted by the MFB lesion. Unilateral CM-PF lesions in otherwise intact cats do not alter caudate unit firing rates nor do they affect striatal dopamine. VA-VL lesions in otherwise intact cats produce a bilateral slowing in the spontaneous firing of neurons in the caudate nuclei, again, whithout altering caudate dopamine concentrations. These results provide further evidence that caudate dopamine concentration per se does not appear to be a potent variable in controlling the spontaneous firing rates of striatal neurons.

摘要

单侧损伤中断纹状体的输出和输入(内侧前脑束损伤)会导致损伤侧对侧尾状核中神经元放电明显减慢,而不影响同侧尾状核中的神经元放电。尽管内侧前脑束损伤也会中断黑质纹状体通路,并使同侧纹状体中的多巴胺及其相关酶减少,但单位放电率的减慢显然是由于纹状体输出的中断而非输入的中断。在腹前 - 腹外侧核(VA - VL)或中央中 - 束旁核(CM - PF)中,将单侧丘脑损伤置于内侧前脑束损伤的同侧,可防止内侧前脑束损伤诱导的尾状核神经元放电率不对称。然而,这些丘脑损伤并不能恢复内侧前脑束损伤所消耗的纹状体多巴胺含量。在其他方面正常的猫中,单侧中央中 - 束旁核损伤不会改变尾状核单位放电率,也不会影响纹状体多巴胺。在其他方面正常的猫中,腹前 - 腹外侧核损伤会使双侧尾状核中神经元的自发放电减慢,同样,这也不会改变尾状核多巴胺浓度。这些结果进一步证明,尾状核多巴胺浓度本身似乎并不是控制纹状体神经元自发放电率的一个有效变量。

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