减少可卡因成瘾中效用预测错误的神经编码。

IF 14.7 1区 医学 Q1 NEUROSCIENCES Neuron Pub Date : 2023-12-20 Epub Date: 2023-10-25 DOI:10.1016/j.neuron.2023.09.015
Anna B Konova, Ahmet O Ceceli, Guillermo Horga, Scott J Moeller, Nelly Alia-Klein, Rita Z Goldstein
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引用次数: 0

摘要

成瘾的影响因素表明,多巴胺能预测错误(PE)不足会导致适应性行为的改变,这表明实际回报和预期回报之间存在差异。多巴胺神经元以主观术语将这些错误信号编码为“效用”PE,并根据个人风险偏好进行校准。然而,目前尚不清楚吸毒者是否有PE缺陷或其计算来源。在这里,使用与先前具有已知预期的单单位研究类似的任务,我们表明fMRI测量的PE类似地反映了效用PE。与对照组参与者相比,患有慢性可卡因成瘾的人在多巴胺受体腹侧纹状体中的效用PE降低,在眶额皮层中也有类似的趋势。将这种PE信号分解为其子成分项,将这些减少归因于对所获得的奖励/效用的较弱的纹状体反应,而对具有奖励期望的活动的抑制没有改变。这些发现支持成瘾可能从根本上破坏PE信号传导,并揭示了感知奖励价值在这一机制中的作用被低估。
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Reduced neural encoding of utility prediction errors in cocaine addiction.

Influential accounts of addiction posit alterations in adaptive behavior driven by deficient dopaminergic prediction errors (PEs), signaling the discrepancy between actual and expected reward. Dopamine neurons encode these error signals in subjective terms, calibrated by individual risk preferences, as "utility" PEs. It remains unclear, however, whether people with drug addiction have PE deficits or their computational source. Here, using an analogous task to prior single-unit studies with known expectancies, we show that fMRI-measured PEs similarly reflect utility PEs. Relative to control participants, people with chronic cocaine addiction demonstrate reduced utility PEs in the dopaminoceptive ventral striatum, with similar trends in orbitofrontal cortex. Dissecting this PE signal into its subcomponent terms attributed these reductions to weaker striatal responses to received reward/utility, whereas suppression of activity with reward expectation was unchanged. These findings support that addiction may fundamentally disrupt PE signaling and reveal an underappreciated role for perceived reward value in this mechanism.

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来源期刊
Neuron
Neuron 医学-神经科学
CiteScore
24.50
自引率
3.10%
发文量
382
审稿时长
1 months
期刊介绍: Established as a highly influential journal in neuroscience, Neuron is widely relied upon in the field. The editors adopt interdisciplinary strategies, integrating biophysical, cellular, developmental, and molecular approaches alongside a systems approach to sensory, motor, and higher-order cognitive functions. Serving as a premier intellectual forum, Neuron holds a prominent position in the entire neuroscience community.
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