Monier C, Fournier J, Frégnac Y
Unité de Neurosciences Intégratives et Computationnelles , 91198 Gif-sur-Yvette Cedex, France.
J Neurosci Methods. 2008 Apr 30;169(2):323-65. doi: 10.1016/j.jneumeth.2007.11.008. Epub 2007 Nov 22.
In order to better understand the synaptic nature of the integration process operated by cortical neurons during sensory processing, it is necessary to devise quantitative methods which allow one to infer the level of conductance change evoked by the sensory stimulation and, consequently, the dynamics of the balance between excitation and inhibition. Such detailed measurements are required to characterize the static versus dynamic nature of the non-linear interactions triggered at the single cell level by sensory stimulus. This paper primarily reviews experimental data from our laboratory based on direct conductance measurements during whole-cell patch clamp recordings in two experimental preparations: (1) in vitro, during electrical stimulation in the visual cortex of the rat and (2) in vivo, during visual stimulation, in the primary visual cortex of the anaesthetized cat. Both studies demonstrate that shunting inhibition is expressed as well in vivo as in vitro. Our in vivo data reveals that a high level of diversity is observed in the degree of interaction (from linear to non-linear) and in the temporal interplay (from push-pull to synchronous) between stimulus-driven excitation (E) and inhibition (I). A detailed analysis of the E/I balance during evoked spike activity further shows that the firing strength results from a simultaneous decrease of evoked inhibition and increase of excitation. Secondary, the paper overviews the various computational methods used in the literature to assess conductance dynamics, measured in current clamp as well as in voltage clamp in different neocortical areas and species, and discuss the consistency of their estimations.
为了更好地理解皮质神经元在感觉处理过程中所进行的整合过程的突触本质,有必要设计出定量方法,以便能够推断出感觉刺激所引发的电导变化水平,进而推断出兴奋与抑制之间平衡的动态变化。需要进行这样详细的测量,以表征在单细胞水平上由感觉刺激触发的非线性相互作用的静态与动态本质。本文主要回顾了我们实验室基于全细胞膜片钳记录过程中的直接电导测量所获得的实验数据,实验采用了两种实验准备:(1)体外实验,在大鼠视觉皮层进行电刺激时;(2)体内实验,在麻醉猫的初级视觉皮层进行视觉刺激时。两项研究均表明,分流抑制在体内和体外均有表现。我们的体内实验数据表明,在刺激驱动的兴奋(E)和抑制(I)之间的相互作用程度(从线性到非线性)以及时间相互作用(从推挽到同步)方面,观察到了高度的多样性。对诱发尖峰活动期间E/I平衡的详细分析进一步表明,放电强度是由诱发抑制的同时降低和兴奋的增加所导致的。其次,本文概述了文献中用于评估电导动力学的各种计算方法,这些方法是在不同新皮层区域和物种的电流钳和电压钳实验中测量得到的,并讨论了它们估计值的一致性。