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灵长类动物中央凹中视锥细胞与三色视觉的关联成本。

Cost of cone coupling to trichromacy in primate fovea.

作者信息

Hsu A, Smith R G, Buchsbaum G, Sterling P

机构信息

Department of Neuroscience, University of Pennsylvania, Philadelphia 19104, USA.

出版信息

J Opt Soc Am A Opt Image Sci Vis. 2000 Mar;17(3):635-40. doi: 10.1364/josaa.17.000635.

Abstract

Cone synaptic terminals couple electrically to their neighbors. This reduces the amplitude of temporally uncorrelated voltage differences between neighbors. For an achromatic stimulus coarser than the cone mosaic, the uncorrelated voltage difference between neighbors represents mostly noise; so noise is reduced more than the signal. Here coupling improves signal-to-noise ratio and enhances contrast sensitivity. But for a chromatic stimulus the uncorrelated voltage difference between neighbors of different spectral type represents mostly signal; so signal would be reduced more than the noise. This cost of cone coupling to encoding chromatic signals was evaluated using a compartmental model of the foveal cone array. When cones sensitive to middle (M) and long (L) wavelengths alternated regularly, and the conductance between a cone and all of its immediate neighbors was 1,000 pS (approximately 2 connexons/cone pair), coupling reduced the difference between the L and M action spectra by nearly fivefold, from about 38% to 8%. However, L and M cones distribute randomly in the mosaic, forming small patches of like type, and within a patch the responses to a chromatic stimulus are correlated. In such a mosaic, coupling still reduced the difference between the L and M action spectra, but only by 2.4-fold, to about 18%. This result is independent of the L/M ratio. Thus "patchiness" of the L/M mosaic allows cone coupling to improve achromatic contrast sensitivity while minimizing the cost to chromatic sensitivity.

摘要

视锥突触终末与其相邻的终末存在电耦合。这会降低相邻终末之间时间上不相关的电压差的幅度。对于比视锥镶嵌更粗糙的消色差刺激,相邻终末之间不相关的电压差主要代表噪声;因此噪声的降低幅度大于信号。在此,耦合提高了信噪比并增强了对比敏感度。但对于色刺激,不同光谱类型的相邻视锥之间不相关的电压差主要代表信号;所以信号的降低幅度会大于噪声。使用中央凹视锥阵列的房室模型评估了视锥耦合对编码色信号的这种代价。当中(M)波长敏感视锥和长(L)波长敏感视锥规则交替,且一个视锥与其所有直接相邻视锥之间的电导为1000 pS(约每对视锥2个连接子)时,耦合使L和M动作光谱之间的差异降低了近五倍,从约38%降至8%。然而,L和M视锥在镶嵌中随机分布,形成同类小斑块,且在一个斑块内对色刺激的反应是相关的。在这样的镶嵌中,耦合仍使L和M动作光谱之间的差异降低,但仅降低了2.4倍,降至约18%。该结果与L/M比率无关。因此,L/M镶嵌的“斑块性”使视锥耦合能够提高消色差对比敏感度,同时将对色敏感度的代价降至最低。

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