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视觉皮层快速放电神经元中的慢适应性

Slow adaptation in fast-spiking neurons of visual cortex.

作者信息

Descalzo V F, Nowak L G, Brumberg J C, McCormick D A, Sanchez-Vives M V

机构信息

Instituto de Neurociencias, Universidad Miguel Hernández-CSIC, San Juan de Alicante, Spain.

出版信息

J Neurophysiol. 2005 Feb;93(2):1111-8. doi: 10.1152/jn.00658.2004. Epub 2004 Sep 22.

Abstract

Fast-spiking (FS) neurons are a class of inhibitory interneurons classically characterized as having short-duration action potentials (<0.5 ms at half height) and displaying little to no spike-frequency adaptation during short (<500 ms) depolarizing current pulses. As a consequence, the resulting injected current intensity versus firing frequency relationship is typically steep, and they can achieve firing frequencies of < or =1 kHz. Here we have investigated the properties of FS neurons discharges on a longer time scale. Twenty second discharges were induced in electrophysiologically identified FS neurons by means of current injection either with sinusoidal current or with square pulses. We found that virtually all FS neurons recorded in cortical slices do show spike-frequency adaptation but with a slow time course (tau = 2-19 s). This slow time course has precluded the observation of this property in previous studies that used shorter pulses. Contrary to the classical view of FS neurons functional properties, long-duration discharges were followed by a slow afterhyperpolarization lasting < or =23 s. During this postadaptation period, the excitability of the neurons was decreased on average for 16.7 +/- 6.8 s, therefore rendering the cell less responsive to subsequent afferent inputs. Slow adaptation is also reported here for FS neurons recorded in vivo. This longer time scale of adaptation in FS neurons may be critical for balancing excitation and inhibition as well as for the understanding of cortical network computations.

摘要

快发放(FS)神经元是一类抑制性中间神经元,其经典特征是具有持续时间短的动作电位(半高宽<0.5毫秒),并且在短的(<500毫秒)去极化电流脉冲期间几乎没有或没有放电频率适应性。因此,所产生的注入电流强度与放电频率的关系通常很陡峭,并且它们可以达到<或=1千赫兹的放电频率。在这里,我们研究了FS神经元在更长时间尺度上的放电特性。通过注入正弦电流或方波脉冲,在电生理鉴定的FS神经元中诱导出20秒的放电。我们发现,在皮质切片中记录的几乎所有FS神经元确实都表现出放电频率适应性,但时间进程缓慢(时间常数τ=2-19秒)。这种缓慢的时间进程使得在以前使用较短脉冲的研究中无法观察到这一特性。与FS神经元功能特性的经典观点相反,长时间放电后接着是持续<或=23秒的缓慢超极化后电位。在这个适应后时期,神经元的兴奋性平均降低16.7±6.8秒,因此使细胞对随后的传入输入反应性降低。这里也报道了在体记录的FS神经元的缓慢适应性。FS神经元中这种更长时间尺度的适应性对于平衡兴奋和抑制以及理解皮质网络计算可能至关重要。

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