Haag J, Borst A
Friedrich-Miescher-Laboratory of the Max-Planck-Society, D-72076 Tuebingen, Germany.
J Neurosci. 1998 Oct 1;18(19):7972-86. doi: 10.1523/JNEUROSCI.18-19-07972.1998.
We investigated the influence of active membrane properties on the precision by which the stimulus velocity is encoded in the membrane potential of a motion-sensitive interneuron in the blowfly. The so-called HS-cells respond to visual motion stimuli with a graded shift in membrane potential. Superimposed on this graded response are small spike-like events. This "mixed" visual response mode can be modified by current injection in two different ways. (1) By ongoing injection of hyperpolarizing current, the spike-like events are turned into full-blown action potentials, and (2) by injection of depolarizing current, the spike-like events become completely suppressed. The visual response then consists of a graded shift of membrane potential only. As a measure of the fidelity, we calculated the coherence between the motion stimulus and the response of the cell elicited with different electrical manipulations of the cell. We found that the coherence was highest for the cell at rest. Any electrical manipulation resulted in a reduced coherence. This was attributable partly to a lower signal-to-noise ratio and partly to an increased nonlinearity in the response. By applying a threshold operation we transformed the analog membrane response into an all-or-none spike train. A comparison between these two ways of signal representation revealed that more information about the stimulus velocity is inherent in the analog membrane potential than in the spike train.
我们研究了主动膜特性对果蝇运动敏感中间神经元膜电位中刺激速度编码精度的影响。所谓的HS细胞对视觉运动刺激产生膜电位的分级变化。叠加在这种分级反应之上的是小的尖峰样事件。这种“混合”视觉反应模式可以通过两种不同方式的电流注入来改变。(1)通过持续注入超极化电流,尖峰样事件转变为成熟的动作电位;(2)通过注入去极化电流,尖峰样事件被完全抑制。此时视觉反应仅由膜电位的分级变化组成。作为保真度的一种度量,我们计算了运动刺激与通过对细胞进行不同电操作所引发的细胞反应之间的相干性。我们发现,细胞处于静息状态时相干性最高。任何电操作都会导致相干性降低。这部分归因于较低的信噪比,部分归因于反应中增加的非线性。通过应用阈值操作,我们将模拟膜反应转换为全或无的尖峰序列。对这两种信号表示方式的比较表明,模拟膜电位中比尖峰序列包含更多关于刺激速度的信息。