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首页> 外文期刊>Behavioural Brain Research: An International Journal >Dopamine denervation of specific striatal subregions differentially affects preparation and execution of a delayed response task in the rat.
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Dopamine denervation of specific striatal subregions differentially affects preparation and execution of a delayed response task in the rat.

机译:特定纹状体亚区的多巴胺去神经支配影响大鼠中延迟反应任务的准备和执行。

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摘要

In the present study, the effects of unilateral or bilateral dopamine denervation of either the dorsal or ventral striatum on the preparation and execution of a delayed response task in the rat were investigated. Animals were instructed to hold a lever pressed down by the presentation of a visual and/or acoustic signal, and were required to hold the lever until a trigger stimulus occurred after an unpredictable delay ranging from 2 to 4 s. The trigger stimulus required animals to release the lever and to press a second lever for food reinforcement. The time between instruction and trigger signal represented the preparation phase preceding movement. The motor performance was evaluated by using reaction and movement times in addition to correct responses in each session. Dopaminergic denervation of either the dorsal or ventral striatum ipsilaterally to the side in which the second lever to be pressed was located did not significantly change reaction and movement times, although it reduced the percentage of correct trials. A significant increase of both reaction and movement times was recorded only after bilateral denervation of the ventral striatum. The analysis of incorrect responses indicated that dopaminergic innervation of the two striatal subregions had different functions in the correct execution of the behavioral paradigm. In the group of animals with dorsal lesions the most frequent incorrect response was represented by a lack of the conditioned response to the presentation of the instruction stimulus starting the trial. If the animals reacted properly to this signal, the performance thereafter was correct in the majority of trials. Conversely, animals with ventral lesions exhibited a large repertoire of incorrect responses throughout the paradigm, including premature release or delayed press of levers, and omission of the second lever press. Histological verification of brain coronal sections by tyrosine-hydroxylase immunoreactivity showed that the lesions were confined in either the dorsal or ventral striatum, sparing the lateral region. The data support the hypothesis that dopaminergic innervation enables the two striatal regions to differently participate in the preparation and execution of complex delayed sensorimotor tasks. Indeed, the dorsal striatum seems to be involved in the correct utilization of external sensory information for the initiation of conditioned behavior, whereas, the ventral striatum appears to be mainly concerned with the temporal expectation of impending stimuli that trigger reward-reinforced movements.
机译:在本研究中,研究了大鼠背侧或腹侧纹状体的单侧或双侧多巴胺去神经支配对大鼠准备和执行延迟反应任务的影响。指示动物通过视觉和/或听觉信号的施加来压下操纵杆,并要求他们握住操纵杆,直到在2到4 s的不可预测的延迟后触发触发。触发刺激需要动物释放操纵杆并按下第二个操纵杆以增强食物。指令和触发信号之间的时间表示运动之前的准备阶段。通过在每次训练中使用正确的反应以及反应和运动时间来评估运动表现。尽管要减少正确试验的百分比,但在要按压第二个杠杆的一侧同侧的背侧或腹侧纹状体的多巴胺能神经支配并没有显着改变反应和运动时间。仅在腹侧纹状体双侧神经支配后,反应时间和运动时间都显着增加。对不正确反应的分析表明,两个纹状体亚区域的多巴胺能神经支配在正确执行行为范例方面具有不同的功能。在具有背侧病变的动物组中,最常见的错误反应是缺乏对开始试验的指示刺激的条件反应。如果动物对这一信号做出适当反应,则此后的表现在大多数试验中都是正确的。相反,具有腹侧病变的动物在整个范式中表现出很大的不正确反应,包括过早释放或延迟按下操纵杆以及省略第二次操纵杆。通过酪氨酸羟化酶免疫反应性对脑冠状切片进行组织学验证,结果表明病变位于侧纹状体或背侧纹状体,而侧方除外。数据支持多巴胺能神经支配使两个纹状体区域不同地参与复杂的延迟感觉运动任务的准备和执行的假设。实际上,背侧纹状体似乎参与了外部感官信息的正确利用,从而引发了有条件的行为,而腹侧纹状体似乎主要与触发奖励增强运动的迫在眉睫的时间预期有关。

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