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海龟视网膜中视锥光感受器的场敏感性作用光谱。

Field sensitivity action spectra of cone photoreceptors in the turtle retina.

作者信息

Perlman I, Itzhaki A, Asi H, Alpern M

机构信息

The Bruce Rappaport Faculty of Medicine, Technion-Israel Institute of Technology and the Rappaport Institute, PO Box 9649, Haifa 31096, Israel

出版信息

J Physiol. 1998 Sep 1;511 ( Pt 2)(Pt 2):479-94. doi: 10.1111/j.1469-7793.1998.479bh.x.

Abstract
  1. The Stiles two-colour increment threshold technique was applied to turtle cone photoreceptors in order to derive their field sensitivity action spectra. 2. Photoresponses of cone photoreceptors were recorded intracellularly. Flash sensitivities were calculated from small amplitude (< 1 mV) responses. The desensitizing effects of backgrounds of different wavelengths were measured and the background irradiance needed to desensitize the cone by a factor of 10 (1 log unit) was defined as threshold. The reciprocals of these thresholds were used to construct the field sensitivity action spectrum. 3. The field sensitivity action spectra of long-wavelength-sensitive (L) and medium-wavelength-sensitive (M) cones depended upon the wavelength of the test flash used to measure them. This excludes the possibility that turtle cones can function as single-colour mechanisms in the Stiles sense. 4. In fourteen L-cones, the average wavelength of peak sensitivity of the field sensitivity action spectrum was 613.7 +/- 7.7 nm for the 500 nm test and 635.6 +/- 9.6 nm for the 700 nm test. For six M-cones, these values were 558.5 +/- 6.8 and 628.8 +/- 10.6 nm for the 500 and 700 nm tests, respectively. 5. Two physiological mechanisms are suggested as contributing to the dependency of the field sensitivity action spectrum upon test wavelength. One is based upon the transmissivity properties of the coloured oil droplets, while the other hypothesizes excitatory interactions between cones of different spectral type. 6. Computer simulations of the field sensitivity action spectra indicate that both mechanisms are needed in order to account for the dependency of the field sensitivity action spectrum upon the wavelength of the test flash.
摘要
  1. 应用斯泰尔斯双色增量阈值技术于海龟视锥光感受器,以得出其场敏感性作用光谱。2. 细胞内记录视锥光感受器的光反应。根据小幅度(<1 mV)反应计算闪光敏感性。测量不同波长背景的脱敏效应,将使视锥脱敏10倍(1个对数单位)所需的背景辐照度定义为阈值。这些阈值的倒数用于构建场敏感性作用光谱。3. 长波长敏感(L)和中波长敏感(M)视锥的场敏感性作用光谱取决于用于测量它们的测试闪光的波长。这排除了海龟视锥在斯泰尔斯意义上可作为单色机制发挥作用的可能性。4. 在14个L视锥中,对于500 nm测试,场敏感性作用光谱的峰值敏感性平均波长为613.7±7.7 nm,对于700 nm测试为635.6±9.6 nm。对于6个M视锥,500和700 nm测试的这些值分别为558.5±6.8和628.8±10.6 nm。5. 提出两种生理机制导致场敏感性作用光谱对测试波长的依赖性。一种基于有色油滴的透射率特性,另一种假设不同光谱类型的视锥之间存在兴奋性相互作用。6. 场敏感性作用光谱的计算机模拟表明,两种机制都需要,以便解释场敏感性作用光谱对测试闪光波长的依赖性。

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本文引用的文献

1
4
Spectral properties of turtle cones.海龟视锥细胞的光谱特性。
Vis Neurosci. 1995 Mar-Apr;12(2):333-44. doi: 10.1017/s0952523800008014.

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