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苍白球和内苍白球核中γ-氨基丁酸受体激活:对猫反应时间表现的相反影响。

GABA-receptor activation in the globus pallidus and entopeduncular nucleus: opposite effects on reaction time performance in the cat.

作者信息

Amalric M, Farin D, Dormont J F, Schmied A

机构信息

Laboratoire de Neurobiologie et Neuropharmacologie du Développement, CNRS, URA 1121, France.

出版信息

Exp Brain Res. 1994;102(2):244-58. doi: 10.1007/BF00227512.

Abstract

The possible role of GABAergic mechanisms in the control of the basal ganglia output structures, the globus pallidus (GP) and the entopeduncular nucleus (EP), was studied in cats performing a conditioned flexion movement triggered by an auditory stimulus. The effects of discrete unilateral microinjections of low doses of the GABAA receptor agonist (muscimol 5-100 ng/0.5 microliter) and antagonist (bicuculline methiodide 25-150 ng/0.5 microliter) in the GP and the EP were tested on the motor performance of eight animals trained to release a lever in a simple reaction time (RT) schedule after an auditory stimulus. Control injections in neighboring structures did not induce any effect except with five- to tenfold higher doses in the closest injection sites. The dose of 20 ng muscimol injected into the ventral and medial part of the GP produced an arrest of the performance after a few unsuccessful trials (over the RT reinforcement limit of 500 ms), while muscimol injected in sites located in the lateral GP resulted in a dose-dependent lengthening in RTs, with a concomitant increase in the force change latency. In most of the subjects, the force exerted on the lever was higher after muscimol than after vehicle injection. Force change velocity was then significantly increased. In contrast, muscimol injected in the ventral and rostral region of the EP produced a decrease in RTs or a complete cessation of responding after a high number of anticipatory responses (release of the lever before the trigger stimulus). No significant changes in the force change latency could be observed while there was a non-significant tendency for the force levels to be lowered. Bicuculline injections in the EP were found to increase RTs with a concomitant increase in force change latency and a slowness of velocity, while no significant effect was observed following injections in the GP. These results suggest that a balance between GABAergic activity in the two output nuclei of the basal ganglia, the GP and the EP, is crucial for the correct initiation and execution of the conditioned motor task.

摘要

在执行由听觉刺激触发的条件性屈曲运动的猫中,研究了γ-氨基丁酸(GABA)能机制在控制基底神经节输出结构——苍白球(GP)和内苍白球核(EP)中的可能作用。对八只经过训练、能在听觉刺激后以简单反应时间(RT)模式释放杠杆的动物,测试了在GP和EP中分别离散单侧微量注射低剂量GABAA受体激动剂(蝇蕈醇5 - 100纳克/0.5微升)和拮抗剂(甲磺酸荷包牡丹碱25 - 150纳克/0.5微升)对运动表现的影响。在相邻结构进行的对照注射除了在最接近的注射部位使用高五到十倍的剂量外,未产生任何影响。向GP腹侧和内侧部分注射20纳克蝇蕈醇后,经过几次不成功的试验(超过500毫秒的RT强化极限),动物的表现停止,而注射到外侧GP部位的蝇蕈醇导致RT呈剂量依赖性延长,同时力变化潜伏期增加。在大多数受试动物中,注射蝇蕈醇后施加在杠杆上的力高于注射赋形剂后。力变化速度随后显著增加。相比之下,向EP腹侧和吻侧区域注射蝇蕈醇后,在大量预期反应(在触发刺激前释放杠杆)后,RT缩短或反应完全停止。虽然力水平有不显著的降低趋势,但未观察到力变化潜伏期有显著变化。在EP中注射荷包牡丹碱会增加RT,同时力变化潜伏期增加且速度减慢,而在GP中注射后未观察到显著影响。这些结果表明,基底神经节的两个输出核团GP和EP中GABA能活性之间的平衡对于条件性运动任务的正确启动和执行至关重要。

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