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在大鼠中敲除血清素转运体可减少听觉辨别过程中眶额皮质和杏仁核之间的β和γ波段功能连接。

Serotonin transporter knockout in rats reduces beta- and gamma-band functional connectivity between the orbitofrontal cortex and amygdala during auditory discrimination.

机构信息

Department of Cognitive Neuroscience, Radboud University Medical Center, Donders Institute for Brain, Cognition and Behaviour, Kapittelweg 29, 6525 EN, Nijmegen, Netherlands.

出版信息

Cereb Cortex. 2024 Aug 1;34(8). doi: 10.1093/cercor/bhae334.

Abstract

The orbitofrontal cortex and amygdala collaborate in outcome-guided decision-making through reciprocal projections. While serotonin transporter knockout (SERT-/-) rodents show changes in outcome-guided decision-making, and in orbitofrontal cortex and amygdala neuronal activity, it remains unclear whether SERT genotype modulates orbitofrontal cortex-amygdala synchronization. We trained SERT-/- and SERT+/+ male rats to execute a task requiring to discriminate between two auditory stimuli, one predictive of a reward (CS+) and the other not (CS-), by responding through nose pokes in opposite-side ports. Overall, task acquisition was not influenced by genotype. Next, we simultaneously recorded local field potentials in the orbitofrontal cortex and amygdala of both hemispheres while the rats performed the task. Behaviorally, SERT-/- rats showed a nonsignificant trend for more accurate responses to the CS-. Electrophysiologically, orbitofrontal cortex-amygdala synchronization in the beta and gamma frequency bands during response selection was significantly reduced and associated with decreased hubness and clustering coefficient in both regions in SERT-/- rats compared to SERT+/+ rats. Conversely, theta synchronization at the time of behavioral response in the port associated with reward was similar in both genotypes. Together, our findings reveal the modulation by SERT genotype of the orbitofrontal cortex-amygdala functional connectivity during an auditory discrimination task.

摘要

眶额皮层和杏仁核通过相互投射在结果导向的决策中协作。虽然 5-羟色胺转运蛋白敲除(SERT-/-)啮齿动物在结果导向的决策以及眶额皮层和杏仁核神经元活动中表现出变化,但 SERT 基因型是否调节眶额皮层-杏仁核同步性仍不清楚。我们训练 SERT-/-和 SERT+/+雄性大鼠通过在相反侧的端口中进行鼻刺来区分两种听觉刺激,一种是奖励(CS+)的预测,另一种则不是(CS-),从而执行一项需要进行结果导向决策的任务。总的来说,基因型并没有影响任务的习得。接下来,当大鼠执行任务时,我们同时记录了双侧眶额皮层和杏仁核的局部场电位。在行为上,SERT-/-大鼠对 CS-的反应准确性有一个不显著的趋势。电生理上,SERT-/-大鼠在选择反应期间,β和γ频带中的眶额皮层-杏仁核同步性显著降低,并且与两个区域的中心度和聚类系数降低有关,与 SERT+/+大鼠相比。相反,在与奖励相关的端口处,行为反应时的θ同步性在两种基因型中相似。总之,我们的研究结果揭示了 SERT 基因型对听觉辨别任务中眶额皮层-杏仁核功能连接的调制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c91a/11317204/e132ed256f3e/bhae334f1.jpg

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