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从伏隔核到苍白球、无名质和视前外侧-下丘脑外侧区的神经投射:大鼠的解剖学和电生理学研究

Neural projections from nucleus accumbens to globus pallidus, substantia innominata, and lateral preoptic-lateral hypothalamic area: an anatomical and electrophysiological investigation in the rat.

作者信息

Mogenson G J, Swanson L W, Wu M

出版信息

J Neurosci. 1983 Jan;3(1):189-202. doi: 10.1523/JNEUROSCI.03-01-00189.1983.

DOI:10.1523/JNEUROSCI.03-01-00189.1983
PMID:6822855
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC6564585/
Abstract

The anatomical organization and electrophysiological characteristics of a projection from the nucleus accumbens to anteroventral parts of the globus pallidus and to a subpallidal region that includes the substantia innominata (SI), the lateral preoptic area (LPO), and anterior parts of the lateral hypothalamic area (LHA) were investigated in the rat. Autoradiographic experiments, with injections of 3H-proline into different sites in the nucleus accumbens and adjacent caudoputamen, indicate that the descending fibers are organized topographically along both mediolateral and dorsoventral gradients, although labeled fibers from adjacent regions of the nucleus accumbens overlap considerably in the ventral globus pallidus and subpallidal region. Injections confined to the caudoputaman only labeled fibers in the globus pallidus. Retrograde transport experiments with the marker true blue confirmed that only the nucleus accumbens projects to the subpallidal region and that the caudoputamen projects upon the glubus pallidus in a topographically organized manner. In electrophysiological recording experiments single pulse stimulation (0.1 to 0.7 mA; 0.15 msec duration) of the nucleus accumbens changed the discharge rate of single neurons in the ventral globus pallidus and in the SI, LPO, and LHA. Typically, the responses were inhibition of neuronal discharge with latencies of 6 to 18 msec. Single pulse stimulation of the dorsolateral caudoputamen altered the discharge rate of single neurons in dorsal regions of the globus pallidus, with inhibition being the most frequently observed response. The results of these anatomical and electrophysiological experiments are complementary and indicate that fibers from the nucleus accumbens innervate the anteroventral region of the globus pallidus as well as the subpallidal region, while most fibers of the caudoputamen innervate the globus pallidus but not the subpallidal region. It appears, therefore, that these two components of the striatum have different output connections. The possible functional significance of these findings is discussed in relation to the projections of the subpallidal region, which may include an output to the mesencephalic locomotor region, and in relation to the nucleus accumbens afferents from the amygdala and hippocampal formation.

摘要

在大鼠中研究了伏隔核到苍白球腹前部以及到一个包括无名质(SI)、外侧视前区(LPO)和下丘脑外侧区(LHA)前部的苍白球下区域的投射的解剖组织和电生理特征。通过向伏隔核和相邻尾壳核的不同部位注射³H-脯氨酸进行的放射自显影实验表明,下行纤维沿内外侧和背腹侧梯度进行拓扑组织,尽管来自伏隔核相邻区域的标记纤维在腹侧苍白球和苍白球下区域有相当大的重叠。仅局限于尾壳核的注射仅标记苍白球中的纤维。用真蓝标记物进行的逆行运输实验证实,只有伏隔核投射到苍白球下区域,而尾壳核以拓扑组织的方式投射到苍白球。在电生理记录实验中,对伏隔核进行单脉冲刺激(0.1至0.7 mA;持续时间0.15毫秒)会改变腹侧苍白球以及SI、LPO和LHA中单个神经元的放电率。通常,反应是神经元放电的抑制,潜伏期为6至18毫秒。对背外侧尾壳核进行单脉冲刺激会改变苍白球背侧区域单个神经元的放电率,抑制是最常观察到的反应。这些解剖学和电生理实验的结果是互补的,表明来自伏隔核的纤维支配苍白球腹前部区域以及苍白球下区域,而尾壳核的大多数纤维支配苍白球但不支配苍白球下区域。因此,纹状体的这两个组成部分似乎具有不同的输出连接。结合苍白球下区域的投射(可能包括向中脑运动区域的输出)以及来自杏仁核和海马结构的伏隔核传入纤维,讨论了这些发现可能的功能意义。