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中脑皮质边缘系统和黑质纹状体多巴胺系统的功能选择性神经化学传入和传出纤维

Functionally selective neurochemical afferents and efferents of the mesocorticolimbic and nigrostriatal dopamine system.

作者信息

Amalric M, Koob G F

机构信息

Department of Neuropharmacology, Scripps Research Institute, La Jolla, CA.

出版信息

Prog Brain Res. 1993;99:209-26. doi: 10.1016/s0079-6123(08)61348-5.

Abstract

In summary, evidence is presented that the mesocorticolimbic and nigrostriatal dopamine systems form functionally selective afferents to different parts of the basal ganglia and these inputs are paralleled by functionally selective outputs. The ventral striatal region of the nucleus accumbens and olfactory tubercle has a dopamine input that is critical for locomotor activation produced by psychomotor stimulant drugs and some non-drug states. These regions also appear critical for the reinforcing actions of psychomotor stimulants such as cocaine and amphetamine, and these regions may also be involved in the activation associated with non-drug rewards. Both psychomotor stimulant-induced locomotor activation and reinforcement may selectively involve dopamine D1 receptors. The functional efferents of this system appear to involve the region of the ventral pallidum and more specifically GABAergic mechanisms of the posterior medial (sublenticular) ventral pallidum. The relationship of this circuitry with the revised concept of the "extended amygdala" is an area of current work. The nigrostriatal dopamine system forms a functionally selective afferent system to the dorsal striatum and appears to be critical for the focused stereotyped behavior associated with high doses of psychomotor stimulants. This dopamine input also appears to be involved in non-drug-induced conditioned reaction time performance and may selectively involve dopamine D2 receptors. The functional efferents of this system appear to involve both direct and indirect GABAergic connections to the substantia nigra reticulata and dorsal pallidum, respectively. Activation of the GABAergic connection to the dorsal pallidum (indirect connection) appears to mimic the action of dopamine in the dorsal striatum, whereas activation of the GABAergic connection to the substantia nigra reticulata (direct connection) appears to modulate striatal dopamine function. These results show an important functional role for the globus pallidus in the output of the dorsal striatum and emphasize the parallel functional processing of both dorsal and ventral striatum.

摘要

总之,有证据表明,中脑边缘多巴胺系统和黑质纹状体多巴胺系统向基底神经节的不同部位形成功能选择性传入纤维,并且这些输入与功能选择性输出并行。伏隔核和嗅结节的腹侧纹状体区域具有多巴胺输入,这对于精神运动兴奋剂药物和某些非药物状态所产生的运动激活至关重要。这些区域对于可卡因和苯丙胺等精神运动兴奋剂的强化作用似乎也很关键,并且这些区域可能还参与了与非药物奖励相关的激活。精神运动兴奋剂诱导的运动激活和强化可能选择性地涉及多巴胺D1受体。该系统的功能传出纤维似乎涉及腹侧苍白球区域,更具体地说是后内侧(豆状核下)腹侧苍白球的GABA能机制。该神经回路与“扩展杏仁核”的修订概念之间的关系是当前的研究领域。黑质纹状体多巴胺系统向背侧纹状体形成功能选择性传入系统,并且似乎对于与高剂量精神运动兴奋剂相关的集中刻板行为至关重要。这种多巴胺输入似乎也参与了非药物诱导的条件反应时间表现,并且可能选择性地涉及多巴胺D2受体。该系统的功能传出纤维似乎分别涉及与黑质网状部和背侧苍白球的直接和间接GABA能连接。与背侧苍白球的GABA能连接(间接连接)的激活似乎模拟了多巴胺在背侧纹状体中的作用,而与黑质网状部的GABA能连接(直接连接)的激活似乎调节纹状体多巴胺功能。这些结果表明苍白球在背侧纹状体的输出中具有重要的功能作用,并强调了背侧和腹侧纹状体的并行功能处理。

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