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Neuronal encoding of habit-like alcohol self-administration in dorsal striatum

Neuronal encoding of habit-like alcohol self-administration in dorsal striatum
背侧纹状体习惯性酒精自我管理的神经元编码
批准号:
8595908
负责人:
Rebecca Richer Fanelli
金额:
$2.73万
依托单位国家:
美国
项目类别:
财政年份:
2014
资助国家:
美国
项目状态:
已结题
起止时间:
2014-05-01 至 2015-03-06

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中文摘要
翻译
描述(由申请人提供):酒精中毒的特征是持续饮酒,随着行为变得根深蒂固并对治疗产生抗药性,可能涉及从目标导向型饮酒转变为习惯性饮酒。最近的证据表明,这些行为具有不同的解剖学基础,背内侧纹状体(DMS)与目标导向行为有关,而背外侧纹状体(DLS)则是习惯形成所必需的。然而,这些区域在酒精强化过程中是否被差异激活以及DLS中特定的神经递质系统在习惯性饮酒中可能发挥什么作用仍然是未知的。本文提出的研究将调查DMS和DLS神经元如何编码线索,行动,并通过细胞外记录长期植入电极在酒精与非酒精奖励的操作性自我管理过程中的奖励传递。这些神经元放电模式将在酒精自我管理模型中进行比较,该模型通常用于产生习惯性酒精寻求:可变间隔时间表。接下来,电生理学将与局部药理学相结合,以研究多巴胺在DLS中对行为的作用以及背侧纹状体神经元的放电模式。我们的中心假设是,习惯性行为的表达取决于并行电路在竞争中发挥作用,在DLS中的感觉运动处理在习惯性酒精自我管理期间表现出更大的激活和行为控制。这些创新和机制的研究将显着推进我们对习惯性酒精寻求和饮酒行为的神经基础的理解,并阐明这种行为的可持续性是否依赖于多巴胺。了解酒精中毒这一关键方面的神经生物学基础对于未来预防和治疗这种慢性疾病是必要的。此外,这里提出的培训将提供一个强大的技术和教育基础,并促进成瘾神经生物学的富有成效的职业生涯。
英文摘要
DESCRIPTION (provided by applicant): Alcoholism is characterized by persistent drinking that may involve a shift from goal-directed to habitual drinking as the behavior becomes engrained and resistant to treatment. Recent evidence suggests these behaviors have distinct anatomical substrates, with the dorsomedial striatum (DMS) implicated in goal-directed behavior, while the dorsolateral striatum (DLS) is required for habit formation. It remains unknown, however, whether these regions are differentially activated during alcohol reinforcement and what role specific neurotransmitter systems in the DLS might play in habitual alcohol drinking. The studies proposed here will investigate how DMS and DLS neurons encode cues, actions, and reward deliveries during operant self- administration of alcoholic versus non-alcoholic rewards via extracellular recordings from chronically implanted electrodes. These neuronal firing patterns will be compared in a model of alcohol self-administration commonly used to generate habitual alcohol seeking: a variable interval schedule. Next, electrophysiology will be combined with local pharmacology to investigate the role of dopamine in the DLS on behavior as well as firing patterns of dorsal striatal neurons. Our central hypothesis is that the expression of habitual behavior depends on parallel circuits acting in competition, with sensorimotor processing in the DLS exhibiting greater activation and behavioral control during habit-like alcohol self-administration. These innovative and mechanistic studies will significantly advance our understanding of the neural substrates of habitual alcohol seeking and drinking behavior, and elucidate whether this behavioral inflexibility is dependent on dopamine. Understanding the neurobiology underlying this critical aspect of alcoholism will be necessary for the future of prevention and treatment of this chronic disease. In addition, the training proposed here will provide a strong technical and educational foundation and promote a productive career in addiction neurobiology.
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