Dunn Felice A, Rieke Fred
Program in Neurobiology and Behavior, University of Washington, Seattle, 98195, USA.
Curr Opin Neurobiol. 2006 Aug;16(4):363-70. doi: 10.1016/j.conb.2006.06.013. Epub 2006 Jul 11.
Multiple retinal mechanisms preserve visual sensitivity as the properties of the light inputs change. Rapid gain controls match the effective signaling range of retinal neurons to the local image statistics. Such gain controls trade an increased sensitivity for some aspects of the inputs for a decreased sensitivity to others. Rapid, local gain control comes at another cost: noise in the signal controlling gain (e.g. from the photoreceptors) will cause gain itself to vary even when the statistics of the light input are constant. Recent advances in identifying retinal pathways and the sites and mechanisms of mean and contrast adaptation have begun to clarify the tradeoffs associated with different gain control locations and how these tradeoffs differ for rod and cone vision.
随着光输入特性的变化,多种视网膜机制可保持视觉敏感度。快速增益控制使视网膜神经元的有效信号范围与局部图像统计数据相匹配。这种增益控制在提高对输入某些方面的敏感度时,会降低对其他方面的敏感度。快速的局部增益控制还会带来另一个代价:控制增益的信号中的噪声(例如来自光感受器的噪声)会导致增益本身发生变化,即使光输入的统计数据保持不变。在识别视网膜通路以及平均适应和对比度适应的位点和机制方面的最新进展,已开始阐明与不同增益控制位置相关的权衡,以及这些权衡在视杆和视锥视觉中如何不同。