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长时程和短时程 theta 爆发刺激对大鼠扣带回前部皮质切片 LTP 诱导的差异作用:多电极阵列记录。

Differential effects of long and short train theta burst stimulation on LTP induction in rat anterior cingulate cortex slices: multi-electrode array recordings.

机构信息

Institute for Biomedical Sciences of Pain, Capital Medical University, Beijing 100069, China.

出版信息

Neurosci Bull. 2009 Oct;25(5):309-18. doi: 10.1007/s12264-009-0831-5.

Abstract

OBJECTIVE

There is substantial evidence supporting the notion that the anterior cingulate cortex (ACC) is an important limbic structure involved in multiple brain functions such as sensory perception, motor conflict monitoring, memory, emotion and cognition. It has been shown that long term potentiation (LTP) is an important synaptic model of neural plasticity in the ACC, however, little is known about the spatiotemporal properties of ACC at network level. The present study was designed to see the LTP induction effects across different layers of the ACC by using different conditioning stimuli (CS) protocols.

METHODS

A unique multi-electrode array recording technique was used in the acutely-dissociated ACC slices of rats. Long and short train theta burst stimulation (TBS) paradigms were applied in layer V-VI as the CS and the LTP induction effects were compared across different layers of the ACC. Briefly, both long and short train TBS are composed of bursts (4 pulses at 100 Hz) with a 200 ms interval, however, the former (TBS1) was with 10 trains and the latter (TBS2) was with 5 trains. After test stimulation at layer V-VI in the ACC, network field potentials (FPs) could be simultaneously recorded across all layers of the ACC.

RESULTS

The waveforms of FPs were different across different layers. Namely, positive-going waveforms were recorded in layer I and negative-going waveforms were recorded in layers V-VI, in contrast, complex waveforms were localized mainly in layers II-III. Following application of two CS protocols, the induction rate of LTP was significantly different between TBS1 and TBS2 regardless of the spatial properties. TBS1 had more than 60% success, while TBS2 was less than 25% in induction of LTP. Moreover, both the 2 CS protocols could induce LTP in layers II-III and layers V-VI without layer-related difference. However, no LTP was inducible in layer I.

CONCLUSION

The present findings indicate that stimulation protocols may, at least in part, account for a large portion of variations among previous LTP studies, and hence highlight the importance of selecting the best LTP induction protocol when designing such experiments. Moreover, the present results demonstrate the prominent superiority of multi-electrode array recording in revealing the network properties of synaptic activities in the ACC, especially in comparing the spatiotemporal characteristics between different layers of this structure.

摘要

目的

有大量证据支持这样一种观点,即前扣带皮层(ACC)是一个重要的边缘结构,涉及多种脑功能,如感觉感知、运动冲突监测、记忆、情绪和认知。已经表明,长时程增强(LTP)是 ACC 中神经可塑性的重要突触模型,然而,关于 ACC 在网络水平上的时空特性知之甚少。本研究旨在通过使用不同的条件刺激(CS)方案,观察 ACC 不同层的 LTP 诱导效应。

方法

在大鼠急性分离的 ACC 切片中使用独特的多电极阵列记录技术。在层 V-VI 中应用长时和短时串 theta 爆发刺激(TBS)方案作为 CS,并比较 ACC 不同层之间的 LTP 诱导效应。简而言之,长时和短时串 TBS 均由间隔 200ms 的 4 个脉冲组成的爆发组成,但是前者(TBS1)有 10 个串,后者(TBS2)有 5 个串。在 ACC 中 V-VI 层的测试刺激后,可以在 ACC 的所有层同时记录网络场电位(FP)。

结果

不同层之间的 FP 波形不同。即在 I 层记录正向上的波形,在 V-VI 层记录负向上的波形,相反,复杂的波形主要定位于 II-III 层。在应用两种 CS 方案后,无论空间特性如何,TBS1 和 TBS2 的 LTP 诱导率都有显著差异。TBS1 的成功率超过 60%,而 TBS2 的成功率不到 25%。此外,两种 CS 方案都可以在 II-III 层和 V-VI 层诱导 LTP,而没有与层相关的差异。然而,在 I 层不能诱导 LTP。

结论

本研究结果表明,刺激方案可能至少部分解释了先前 LTP 研究之间存在较大差异的原因,因此强调了在设计此类实验时选择最佳 LTP 诱导方案的重要性。此外,本研究结果表明,多电极阵列记录在揭示 ACC 中突触活动的网络特性方面具有明显的优势,特别是在比较该结构不同层之间的时空特征时。

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