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FOREBRAIN CIRCUITRY INVOLVED IN EFFORT-RELATED CHOICE: INJECTIONS OF THE GABAA AGONIST MUSCIMOL INTO VENTRAL PALLIDUM ALTER RESPONSE ALLOCATION IN FOOD-SEEKING BEHAVIOR

机译:涉及到与工作有关的选择的前脑电路:将GABAA促性腺激素注射到腹地白藜芦中以改变食物寻找行为中的响应分配

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摘要

Organisms often make effort-related choices based upon assessments of motivational value and work requirements. Nucleus accumbens dopamine is a critical component of the brain circuitry regulating work output in reinforcement-seeking behavior. Rats with accumbens dopamine depletions reallocate their instrumental behavior away from food-reinforced tasks that have high response requirements, and instead they select a less-effortful type of food-seeking behavior. The ventral pallidum is a brain area that receives substantial GABAergic input from nucleus accumbens. It was hypothesized that stimulation of GABAA receptors in the ventral pallidum would result in behavioral effects that resemble those produced by interference with accumbens dopamine transmission. The present studies employed a concurrent choice lever pressing/chow intake procedure; with this task, interference with accumbens dopamine transmission shifts choice behavior such that lever pressing for food is decreased but chow intake is increased. In the present experiments, infusions of the GABAA agonist muscimol (5.0–10.0 ng) into the ventral pallidum decreased lever pressing for preferred food, but increased consumption of the less preferred chow. In contrast, ventral pallidal infusions of muscimol (10.0 ng) had no significant effect on preference for the palatable food in free-feeding choice tests. Furthermore, injections of muscimol into a control site dorsal to the ventral pallidum produced no significant effects on lever pressing and chow intake. These data indicate that stimulation of GABA receptors in ventral pallidum produces behavioral effects similar to those produced by accumbens dopamine depletions. Ventral pallidum appears to be a component of the brain circuitry regulating response allocation and effort-related choice behavior, and may act to convey information from nucleus accumbens to other parts of this circuitry. This research may have implications for understanding the brain mechanisms involved in energy-related psychiatric dysfunctions such as psychomotor retardation in depression, anergia, and apathy.
机译:有机体通常根据对激励价值和工作要求的评估来做出与工作相关的选择。伏伏核多巴胺是调节寻求增强行为中的工作输出的大脑电路的重要组成部分。消耗多巴胺的多巴胺的大鼠将其工具行为从具有较高反应要求的食物强化任务中重新分配出来,而是选择了一种轻松的食物寻求行为。腹侧苍白球是一个大脑区域,从伏伏核接受大量的GABA能输入。假设刺激腹侧苍白球中的GABAA受体会产生类似于干扰伏安多巴胺传递所产生的行为效果。目前的研究采用了同时选择杆按压/入口腔的程序。这项任务会干扰伏安的多巴胺传递,从而改变选择行为,从而减少了食物的操纵杆压力,但增加了食物摄入量。在本实验中,向腹侧苍白球中注入GABAA激动剂麝香酚(5.0–10.0 ng)可以降低首选食物的杠杆压力,但会增加次优食物的消费量。相反,在自由进食选择试验中,腹侧输注muscimol(10.0 ng)的苍白球对喜好食物的偏好没有显着影响。此外,将麝香酚注射到腹侧苍白球背面的控制部位对杠杆的压迫和食物的摄取没有显着影响。这些数据表明,对腹侧苍白球中GABA受体的刺激产生的行为效应与伏隔多巴胺耗尽产生的行为效应相似。腹侧苍白质似乎是调节反应分配和与努力相关的选择行为的大脑电路的组成部分,并且可能起到将信息从伏隔核传递到该电路的其他部分的作用。这项研究可能对理解与能量相关的精神功能障碍(如抑郁症,无痛和冷漠中的精神运动发育迟缓)所涉及的脑机制具有启示意义。

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