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乌龟(中亚泽龟)视网膜中视锥光感受器的作用光谱。

The action spectra of cone photoreceptors in the turtle (Mauremys caspica) retina.

作者信息

Perlman I, Itzhaki A, Malik S, Alpern M

机构信息

Bruce Rappaport Faculty of Medicine, Technion-Israel Institute of Technology, Haifa, Israel.

出版信息

Vis Neurosci. 1994 Mar-Apr;11(2):243-52. doi: 10.1017/s0952523800001607.

Abstract

Cone photoreceptors in the turtle retina are involved in intricate neuronal interactions with other retinal neurons that modify the responses of the cones to photons absorbed in their outer segments. Therefore, the action spectra of cones strongly depend upon the conditions of measurements. This study describes an attempt to derive the action spectra of turtle cones which are the least distorted by neuronal interactions. To achieve this goal, the photoresponses of cones and horizontal cells were recorded from the turtle retina under different conditions of adaptation using different patterns of the stimulating test flashes. The sensitivity action spectra, derived from small-amplitude (<1 mV) photoresponses, were strongly affected by the recording conditions indicating the contributions of multiple neuronal inputs. Action spectra, constructed from large criterion photoresponses, were less distorted by neuronal interactions and better described the spectral properties of the "isolated" cones. The action spectra of the hyperpolarizing inputs to chromaticity-type horizontal cells were derived by stimulating these cells with mixtures of a saturating red light and a monochromatic light of different wavelength and intensity. The action spectra were constructed from the intensity of the addend component needed to "pull down" the depolarizing response to the red component by a fixed criterion. These spectra, measured in red/green and yellow/blue C-type horizontal cells, are suggested to best represent the "isolated" M-cones and S-cones, respectively.

摘要

乌龟视网膜中的视锥光感受器与其他视网膜神经元参与复杂的神经元相互作用,这些相互作用会改变视锥对其外段吸收光子的反应。因此,视锥的作用光谱强烈依赖于测量条件。本研究描述了一种尝试,以推导受神经元相互作用影响最小的乌龟视锥的作用光谱。为实现这一目标,在不同的适应条件下,使用不同模式的刺激测试闪光,从乌龟视网膜记录视锥和水平细胞的光反应。从小幅度(<1 mV)光反应得出的敏感作用光谱,受记录条件的强烈影响,表明存在多个神经元输入的贡献。由大标准光反应构建的作用光谱,受神经元相互作用的影响较小,能更好地描述“孤立”视锥的光谱特性。通过用饱和红光和不同波长及强度的单色光的混合物刺激色度型水平细胞,得出其超极化输入的作用光谱。作用光谱是根据通过固定标准“降低”对红色成分的去极化反应所需的加数成分的强度构建的。在红/绿和黄/蓝C型水平细胞中测量的这些光谱,分别被认为最能代表“孤立”的M视锥和S视锥。

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