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猫视觉皮层神经元在体外和体内放电变异性的比较。

Comparison of discharge variability in vitro and in vivo in cat visual cortex neurons.

作者信息

Holt G R, Softky W R, Koch C, Douglas R J

机构信息

Computation and Neural Systems Program, California Institute of Technology, Pasadena 91125, USA.

出版信息

J Neurophysiol. 1996 May;75(5):1806-14. doi: 10.1152/jn.1996.75.5.1806.

Abstract
  1. In neocortical slices, the majority of neurons fire quite regularly in response to constant current injections. But neurons in the intact animal fire irregularly in response to constant current injection as well as to visual stimuli. 2. To quantify this observation, we developed a new measure of variability, which compares only adjacent interspike intervals and is therefore less sensitive to rate variations than existing measures such as the coefficient of variation of interspike intervals. 3. We find that the variability of firing is much higher in cells of primary visual cortex in the anesthetized cat than in slice. The response to current injected from an intracellular electrode in vivo is also variable, but slightly more regular and less bursty than in response to visual stimuli. 4. Using a new technique for analyzing the variability of integrate-and-fire neurons, we prove that this behavior is consistent with a simple integrate-and-fire model receiving a large amount of synaptic background activity, but not with a noisy spiking mechanism.
摘要
  1. 在新皮层切片中,大多数神经元在响应恒定电流注入时放电相当规律。但完整动物体内的神经元在响应恒定电流注入以及视觉刺激时放电是不规律的。2. 为了量化这一观察结果,我们开发了一种新的变异性测量方法,该方法仅比较相邻的峰间期,因此与诸如峰间期变异系数等现有测量方法相比,对放电频率变化的敏感度更低。3. 我们发现,麻醉猫初级视觉皮层细胞的放电变异性比切片中的要高得多。体内对细胞内电极注入电流的反应也是可变的,但比视觉刺激反应稍显规律,爆发性也较小。4. 使用一种分析积分发放神经元变异性的新技术,我们证明这种行为与接收大量突触背景活动的简单积分发放模型一致,但与噪声发放机制不一致。

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