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审前功能连接可区分兔子痕迹眨眼条件反射过程中的行为结果。

Pretrial functional connectivity differentiates behavioral outcomes during trace eyeblink conditioning in the rabbit.

作者信息

Schroeder Matthew P, Weiss Craig, Procissi Daniel, Wang Lei, Disterhoft John F

机构信息

Department of Physiology, Feinberg School of Medicine, Northwestern University, Chicago, Illinois 60611, USA.

Department of Radiology, Feinberg School of Medicine, Northwestern University, Chicago, Illinois 60611, USA.

出版信息

Learn Mem. 2016 Mar 15;23(4):161-8. doi: 10.1101/lm.040220.115. Print 2016 Apr.

Abstract

Fluctuations in neural activity can produce states that facilitate and accelerate task-related performance. Acquisition of trace eyeblink conditioning (tEBC) in the rabbit is enhanced when trials are contingent on optimal pretrial activity in the hippocampus. Other regions which are essential for whisker-signaled tEBC, such as the cerebellar interpositus nucleus (IPN), somatosensory and prelimbic cortices, may also show optimal connectivity prior to successful performance. Functional magnetic resonance imaging (fMRI) was acquired in nine rabbits during tEBC on the first and tenth days of initial training and once again after a 30-d, training-free hiatus. Data acquired during the intertrial interval was parsed depending on whether or not a conditioned response (CR) occurred on the upcoming trial and seed-based functional connectivity was calculated among the IPN, hippocampus, somatosensory, and prelimbic cortices. Functional connectivity between the left somatosensory cortex and right IPN, regions critical for establishing and producing CRs evoked by right vibrissae vibration and right corneal airpuff, was significantly negative prior to successful, CR trials as compared with unsuccessful, non-CR trials. Differences were not observed for any of the other possible combinations of connectivity. Our results demonstrate that specific pretrial functional connectivity exists within the rabbit brain and differentiates between upcoming behavioral response outcomes. Online analysis of network fluctuations has the potential to be used as the basis for therapeutic interventions to facilitate learning and memory.

摘要

神经活动的波动能够产生有助于并加速与任务相关表现的状态。当试验取决于海马体中的最佳 pretrial 活动时,家兔的痕迹眨眼条件反射(tEBC)的习得会得到增强。对于须信号 tEBC 至关重要的其他区域,如小脑间位核(IPN)、体感皮层和前边缘皮层,在成功表现之前也可能显示出最佳的连通性。在初次训练的第一天和第十天以及在 30 天无训练间隙后再次进行 tEBC 期间,对九只家兔进行了功能磁共振成像(fMRI)。根据即将到来的试验中是否出现条件反应(CR)对试验间隔期间获取的数据进行解析,并计算 IPN、海马体、体感皮层和前边缘皮层之间基于种子的功能连通性。与不成功的非 CR 试验相比,在成功的 CR 试验之前,左体感皮层和右 IPN 之间的功能连通性显著为负,左体感皮层和右 IPN 是由右须振动和右角膜吹气诱发的 CR 的建立和产生的关键区域。对于任何其他可能的连通性组合均未观察到差异。我们的结果表明,家兔大脑中存在特定的 pretrial 功能连通性,并能区分即将到来的行为反应结果。对网络波动的在线分析有可能用作促进学习和记忆的治疗干预的基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c440/4793201/d92a0cb1a463/SchroederLM040220f01.jpg

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