Characterization of neuronal oscillations in the prelimbic cortex, nucleus accumbens and CA1 hippocampus during object retrieval task in rats predisposed to early life stress.

IF 4.7 2区 心理学 Q1 BEHAVIORAL SCIENCES
Shruthi S Sharma, Arun Sasidharan, D Yoganarasimha, T R Laxmi
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引用次数: 0

Abstract

Background: Early life stress (ELS) during the stress hypo-responsive period (SHRP) alters the curiosity-like behavior later during adolescence. Previous studies have shown maternal separation (MS) stress-induced heightened curiosity and associated risk-taking behavior in the object retrieval task (ORT). However, the neural correlates of curiosity in adolescent rats predisposed to early life stress remain unexplored. Hence, the present study aimed to investigate the neural oscillatory patterns and network characteristics in the regions implicated in curiosity behavior, such as the Prelimbic cortex (PL), Nucleus Accumbens (NAc), and CA1 of the Hippocampus. The local field potentials data were analysed to understand the neural activity patterns in these areas during the risky zone crossing and object retrieval phase of the ORT in MS rats and compared with the normal control (NC) group.

Results: In comparison to NC, MS rats showed a reduction in the theta power at 8-12 Hz, beta power at 12-20 Hz, and gamma power at 20-40 Hz range in the PL during risky zone crossing time. MS rats also showed reduced cross-correlation between PL-CA1 and reduced theta coherence between NAc-CA1 during risky zone crossing. During the object retrieval phase, the MS rats showed reduced peak cross-correlation between PL-CA1 and PL-NAc. Behaviourally, MS rats displayed an increased preference for the curiosity platform and retrieved more hidden objects, thus accounting for a higher curiosity index than controls.

Conclusion: In summary, a reduced synchronization between the PL, NAc, and CA1 during the object retrieval task indicates how early MS stress during a critical developmental period impacts the limbic circuit connectivity. This corresponded with enhanced curiosity index in adolescent MS rats, predicting an altered intrinsic motivation and hence a higher susceptibility to substance use disorders during adolescence.

早期生活应激易感大鼠客体检索任务中前叶皮质、伏隔核和CA1海马神经元振荡特征。
背景:应激低反应期的早期生活压力(ELS)改变了青少年后期的好奇行为。先前的研究表明,母亲分离(MS)压力会引起客体检索任务(ORT)中好奇心的增强和相关的冒险行为。然而,青春期大鼠易受早期生活压力影响的好奇心的神经相关性仍未被探索。因此,本研究旨在研究海马前边缘皮质(PL)、伏隔核(NAc)和CA1等与好奇行为有关的区域的神经振荡模式和网络特征。分析MS大鼠在ORT危险区交叉和物体检索阶段这些区域的局部场电位数据,并与正常对照组进行比较。结果:与NC相比,MS大鼠在危险区穿越时间内,PL中8 ~ 12 Hz、12 ~ 20 Hz和20 ~ 40 Hz范围内的θ波功率降低。MS大鼠在穿越危险区时PL-CA1之间的相互关系降低,NAc-CA1之间的θ相干性降低。在物体检索阶段,MS大鼠PL-CA1与PL-NAc的相互关系峰值降低。在行为上,MS大鼠表现出对好奇心平台的更大偏好,并且检索到更多隐藏的物体,因此比对照组有更高的好奇心指数。结论:综上所述,客体检索任务中PL、NAc和CA1的同步性降低说明了早期MS应激对边缘回路连通性的影响。这与青春期MS大鼠的好奇心指数增强相对应,预测了内在动机的改变,因此在青春期对物质使用障碍的易感性更高。
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来源期刊
Behavioral and Brain Functions
Behavioral and Brain Functions 医学-行为科学
CiteScore
5.90
自引率
0.00%
发文量
11
审稿时长
6-12 weeks
期刊介绍: A well-established journal in the field of behavioral and cognitive neuroscience, Behavioral and Brain Functions welcomes manuscripts which provide insight into the neurobiological mechanisms underlying behavior and brain function, or dysfunction. The journal gives priority to manuscripts that combine both neurobiology and behavior in a non-clinical manner.
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