5-羟色胺能
神经科学
前脑
基底前脑
脑干
中缝核
中缝背核
中缝
丘脑
中脑
生物
加巴能
前额叶皮质
逆行追踪
中缝正中核
血清素
解剖
神经元
5-羟色胺能细胞群
中枢神经系统
生物化学
受体
抑制性突触后电位
认知
作者
Iskra Pollak Dorocic,Daniel Fürth,Yang Xuan,Yvonne Johansson,Laura Pozzi,Gilad Silberberg,Marie Carlén,Konstantinos Meletis
出处
期刊:Neuron
[Elsevier]
日期:2014-08-01
卷期号:83 (3): 663-678
被引量:341
标识
DOI:10.1016/j.neuron.2014.07.002
摘要
The serotonin system is proposed to regulate physiology and behavior and to underlie mood disorders; nevertheless, the circuitry controlling serotonergic neurons remains uncharacterized. We therefore generated a comprehensive whole-brain atlas defining the monosynaptic inputs onto forebrain-projecting serotonergic neurons of dorsal versus median raphe based on a genetically restricted transsynaptic retrograde tracing strategy. We identified discrete inputs onto serotonergic neurons from forebrain and brainstem neurons, with specific inputs from hypothalamus, cortex, basal ganglia, and midbrain, displaying a greater than anticipated complexity and diversity in cell-type-specific connectivity. We identified and functionally confirmed monosynaptic glutamatergic inputs from prefrontal cortex and lateral habenula onto serotonergic neurons as well as a direct GABAergic input from striatal projection neurons. In summary, our findings emphasize the role of hyperdirect inputs to serotonergic neurons. Cell-type-specific classification of connectivity patterns will allow for further functional analysis of the diverse but specific inputs that control serotonergic neurons during behavior.
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