多巴胺
纹状体
直接运动途径
帕金森病
神经科学
光遗传学
中棘神经元
多巴胺能
人口
化学
间接运动途径
伏隔核
多巴胺受体D1
基底神经节
黑质
生物
心理学
多巴胺受体
多巴胺受体D2
疾病
中枢神经系统
医学
内科学
环境卫生
作者
Marta Maltese,Jeffrey R. March,Alexander G. Bashaw,Nicolas X. Tritsch
摘要
ABSTRACT Dopamine (DA) is a critical modulator of brain circuits that control voluntary movements, but our understanding of its influence on the activity of target neurons in vivo remains limited. Here, we use two-photon Ca 2+ imaging to monitor the activity of direct and indirect-pathway spiny projection neurons (SPNs) simultaneously in the striatum of behaving mice during acute and prolonged manipulations of DA signaling. We find that increasing and decreasing DA biases striatal activity towards the direct and indirect pathways, respectively, by changing the overall number of SPNs recruited during behavior in a manner not predicted by existing models of DA function. This modulation is drastically altered in a model of Parkinson’s disease. Our results reveal a previously unappreciated population-level influence of DA on striatal output and provide novel insights into the pathophysiology of Parkinson’s disease.
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