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不同时间频率下视网膜电图中视杆细胞与L视锥细胞及视杆细胞与M视锥细胞的相互作用

Rod-/L-cone and rod-/M-cone interactions in electroretinograms at different temporal frequencies.

作者信息

Kremers J, Scholl H P

机构信息

Department of Experimental Ophthalmology, University of Tübingen Eye Hospital, Germany.

出版信息

Vis Neurosci. 2001 May-Jun;18(3):339-51.

Abstract

We recorded electroretinograms (ERGs) under stimulus conditions that only modulated one cone type: either the L- or the M-cones. In these conditions the rods were also modulated. We measured the ERG responses at different temporal frequencies. A simple model that assumes that the first harmonic components of the responses are the result of a vector addition of rod- and cone-driven ERG responses can explain the data satisfactorily for temporal frequencies at and above 6 Hz. From fits of the model to the data, estimates of the gains and phases of the rod- and cone-driven responses can be obtained. At 6 Hz, the fundamental responses originate exclusively in the rods. The gains of the cone-driven responses are substantial at the other temporal frequencies, are maximal at 12 or 18 Hz, and then decrease with increasing temporal frequencies. The gains of the rod-driven responses decrease more steeply with increasing temporal frequencies than the cone gains. Furthermore, the rod and cone phases decrease approximately linearly with temporal frequency, suggesting that they are mainly determined by a response delay. The response delay in the rod-driven ERGs is larger than in the cone-driven ERGs.

摘要

我们在仅调制一种视锥细胞类型(L视锥细胞或M视锥细胞)的刺激条件下记录视网膜电图(ERG)。在这些条件下,视杆细胞也会受到调制。我们在不同的时间频率下测量ERG反应。一个简单的模型假设反应的一次谐波分量是视杆细胞和视锥细胞驱动的ERG反应矢量相加的结果,对于6Hz及以上的时间频率,该模型能够令人满意地解释数据。通过将模型拟合到数据中,可以获得视杆细胞和视锥细胞驱动反应的增益和相位估计值。在6Hz时,基本反应完全源自视杆细胞。视锥细胞驱动反应的增益在其他时间频率下很大,在12或18Hz时最大,然后随着时间频率的增加而降低。视杆细胞驱动反应的增益比视锥细胞增益随时间频率增加下降得更陡峭。此外,视杆细胞和视锥细胞的相位随时间频率近似线性下降,这表明它们主要由反应延迟决定。视杆细胞驱动的ERG中的反应延迟大于视锥细胞驱动的ERG中的反应延迟。

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