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Distinct Roles of Ventromedial versus Ventrolateral Striatal Medium Spiny Neurons in Reward-Oriented Behavior

机译:腹腔内与腹侧纹纹培养型刺绣神经元以奖励为导向行为的不同作用

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摘要

The ventral striatum (VS) is a key brain center regulating reward-oriented behavior [1-4]. The VS can be anatomically divided into medial (VMS) and lateral (VLS) portions based on cortical input patterns. The VMS receives inputs from medial pallium-originated limbic structures (e.g., the medial prefrontal cortex [mPFC]), and the VLS receives inputs from the lateral pallium-originated areas (e.g., the insula) [5, 6]. This anatomical feature led us to hypothesize a functional segregation within the VS in terms of the regulation of reward-oriented behavior. Here, we engineered a fiber photometry system [4] and monitored population-level Ca2+ activities of dopamine D2-receptor-expressing medium spiny neurons (D2-MSNs), one of the major cell types in the striatum, during a food-seeking discrimination task. We found that VLS D2-MSNs were activated at the time of cue presentation. In stark contrast, VMS D2-MSNs were inhibited at this time point. Optogenetic counteraction of those changes in the VLS and VMS impaired action initiation and increased responding toward non-rewarded cues, respectively. During lever-press reversal training, VMS inhibition at the time of cue presentation temporarily ceased and optogenetic activation of VMS D2-MSNs facilitated acquisition of the new contingency. These data indicate that the opposing inhibition and excitation in VMS and VLS are important for selecting and initiating a proper action in a reward-oriented behavior. We propose distinct subregional roles within the VS in the execution of successful reward-oriented behavior.
机译:腹侧纹状体(VS)是调节奖励导向行为的关键脑中心[1-4]。 VS可以基于皮质输入图案对VS分成内侧(VM)和横向(VLS)部分。 VMS从内侧泡泡源肢体结构接收输入(例如,中间前额定皮层[MPFC]),并且VLS从侧孔源地区(例如,insula)[5,6]接收输入。该解剖功能导致我们在对奖励导向行为的调节方面假设VS内的功能偏析。在这里,我们设计了一种纤维测光系统[4]并监测了在寻求食物歧视期间纹理中的多巴胺D2-受体表达的中刺型培养基神经元(D2-MSNS)的人群水平Ca2 +活性。任务。我们发现在提示呈现时激活VLS D2-MSN。在STARK对比中,在此时间点抑制了VMS D2-MSN。 VLS和VMS损伤作用启动的那些变化的光学抵抗分别增加了对非奖励线索的影响。在杠杆压力训练期间,提示介绍时的VM抑制暂时停止和对VMS D2-MSNS的致敏激活促进了收购新的应急。这些数据表明,VMS和VL中的相反的抑制和激发对于在奖励导向行为中选择和启动适当的动作是重要的。我们在执行成功奖励的行为中提出了与VS中的明显的次区域角色。

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