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经典条件反射过程中复合锋电位活动的变化。

Changes in complex spike activity during classical conditioning.

作者信息

Rasmussen Anders, Jirenhed Dan-Anders, Wetmore Daniel Z, Hesslow Germund

机构信息

Department of Experimental Medical Science, Associative Learning Group, Lund University Lund, Sweden ; Linneaus Center CCL, Lund University Lund, Sweden.

Department of Physics, James H. Clark Center for Biomedical Engineering and Sciences, Stanford University Stanford, CA, USA.

出版信息

Front Neural Circuits. 2014 Aug 5;8:90. doi: 10.3389/fncir.2014.00090. eCollection 2014.

Abstract

The cerebellar cortex is necessary for adaptively timed conditioned responses (CRs) in eyeblink conditioning. During conditioning, Purkinje cells acquire pause responses or "Purkinje cell CRs" to the conditioned stimuli (CS), resulting in disinhibition of the cerebellar nuclei (CN), allowing them to activate motor nuclei that control eyeblinks. This disinhibition also causes inhibition of the inferior olive (IO), via the nucleo-olivary pathway (N-O). Activation of the IO, which relays the unconditional stimulus (US) to the cortex, elicits characteristic complex spikes in Purkinje cells. Although Purkinje cell activity, as well as stimulation of the CN, is known to influence IO activity, much remains to be learned about the way that learned changes in simple spike firing affects the IO. In the present study, we analyzed changes in simple and complex spike firing, in extracellular Purkinje cell records, from the C3 zone, in decerebrate ferrets undergoing training in a conditioning paradigm. In agreement with the N-O feedback hypothesis, acquisition resulted in a gradual decrease in complex spike activity during the conditioned stimulus, with a delay that is consistent with the long N-O latency. Also supporting the feedback hypothesis, training with a short interstimulus interval (ISI), which does not lead to acquisition of a Purkinje cell CR, did not cause a suppression of complex spike activity. In contrast, observations that extinction did not lead to a recovery in complex spike activity and the irregular patterns of simple and complex spike activity after the conditioned stimulus are less conclusive.

摘要

小脑皮质对于眨眼条件反射中适应性定时条件反应(CRs)是必需的。在条件反射过程中,浦肯野细胞获得对条件刺激(CS)的暂停反应或“浦肯野细胞CRs”,导致小脑核(CN)的去抑制,使其能够激活控制眨眼的运动核。这种去抑制还通过核橄榄通路(N-O)导致下橄榄核(IO)的抑制。IO将无条件刺激(US)传递到皮质,其激活会在浦肯野细胞中引发特征性的复合动作电位。虽然已知浦肯野细胞活动以及CN的刺激会影响IO活动,但关于简单动作电位发放的学习变化如何影响IO,仍有许多有待了解。在本研究中,我们分析了在条件反射范式训练的去大脑雪貂中,从C3区细胞外记录的浦肯野细胞简单和复合动作电位发放的变化。与N-O反馈假说一致,习得过程导致条件刺激期间复合动作电位活动逐渐减少,延迟与N-O的长潜伏期一致。同样支持反馈假说的是,以短刺激间隔(ISI)进行训练,这不会导致浦肯野细胞CR的习得,也不会引起复合动作电位活动的抑制。相比之下,消退并未导致复合动作电位活动恢复以及条件刺激后简单和复合动作电位活动的不规则模式等观察结果,其结论性较差。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9fd8/4122208/67e7cedb74cc/fncir-08-00090-g0001.jpg

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