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测量奖励学习任务期间的纹状体外多巴胺释放。

Measuring extrastriatal dopamine release during a reward learning task.

机构信息

Department of Psychiatry, University Hospital Leuven, Belgium.

出版信息

Hum Brain Mapp. 2013 Mar;34(3):575-86. doi: 10.1002/hbm.21456. Epub 2011 Nov 23.

Abstract

OBJECTIVES

Reward learning is critical for survival. Animal research emphasizes the role of dopaminergic (DA) mesocorticolimbic pathways in reward learning, but few studies have evaluated extrastriatal DA functioning in humans. The purpose of this study was to examine presynaptic DA release in extrastriatal regions of the reward circuit by measuring displacement of the high affinity D(2) /D(3) radioligand [(18) F]Fallypride during a reward task.

DESIGN

Ten healthy volunteers underwent a [(18) F]Fallypride positron emission tomography protocol while performing a reward task, allowing us to assess participants' ability to modulate behavior as a function of reward. DA receptor ligand displacement was correlated with task performance and self-reported anhedonia.

OBSERVATIONS

Parametric t-maps revealed significant decrease in [(18) F]Fallypride binding in the medial orbitofrontal cortex (mOFC), ventromedial prefrontal cortex (vmPFC), and dorsal anterior cingulate cortex (dACC), indicating endogenous DA release in these regions. Increasing anhedonic symptoms correlated with DA release in the left vmPFC, left dACC, and right dACC emerged (all r's > 0.65, P's < 0.05). Similarly, reduced reward learning correlated with higher DA release in left vmPFC, right vmPFC, and left dACC (all r's < -0.64, P's < 0.05). Left dACC (r = 0.66, P = 0.04) and left vmPFC (r = 0.74, P = 0.01) DA release showed a significant positive correlation with impaired tendency to modulate behavior as a function of prior positive reinforcements.

CONCLUSIONS

These findings support the hypothesis that DA release in mOFC, vmPFC, and dACC regions plays an important role in reinforcement learning in the human brain.

摘要

目的

奖励学习对于生存至关重要。动物研究强调多巴胺能(DA)中脑皮质边缘通路在奖励学习中的作用,但很少有研究评估人类纹外 DA 功能。本研究旨在通过测量高亲和力 D2 / D3 放射性配体 [(18) F] Fallypride 在奖励任务期间的位移来检查奖励回路的纹外区域中的前突触 DA 释放。

设计

十名健康志愿者在进行 [(18) F] Fallypride 正电子发射断层扫描方案的同时进行奖励任务,使我们能够评估参与者根据奖励调节行为的能力。DA 受体配体置换与任务表现和自我报告的快感缺失相关。

观察

参数 t 映射显示内侧眶额皮质(mOFC)、腹内侧前额叶皮质(vmPFC)和背侧前扣带皮质(dACC)中 [(18) F] Fallypride 结合的显著减少,表明这些区域内源性 DA 释放。快感缺失症状的增加与左 vmPFC、左 dACC 和右 dACC 中的 DA 释放相关(所有 r>0.65,P<0.05)。同样,减少奖励学习与左 vmPFC、右 vmPFC 和左 dACC 中的更高 DA 释放相关(所有 r< -0.64,P<0.05)。左 dACC(r=0.66,P=0.04)和左 vmPFC(r=0.74,P=0.01)的 DA 释放与调节行为的倾向受损呈显著正相关,作为先前正强化的函数。

结论

这些发现支持这样一种假设,即 mOFC、vmPFC 和 dACC 区域中的 DA 释放在人类大脑中的强化学习中起着重要作用。

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