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首页> 外文期刊>The Journal of Physiology >Cones perform a non-linear transformation on natural stimuli.
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Cones perform a non-linear transformation on natural stimuli.

机译:锥对自然刺激执行非线性转换。

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Visual information in natural scenes is distributed over a broad range of intensities and contrasts. This distribution has to be compressed in the retina to match the dynamic range of retinal neurons. In this study we examined how cones perform this compression and investigated which physiological processes contribute to this operation. M- and L-cones of the goldfish were stimulated with a natural time series of intensities (NTSI) and their responses were recorded. The NTSI displays an intensity distribution which is skewed towards the lower intensities and has a long tail into the high intensity region. Cones transform this skewed distribution into a more symmetrical one. The voltage responses of the goldfish cones were compared to those of a linear filter and a non-linear biophysical model of the photoreceptor. The results show that the linear filter under-represents contrasts at low intensities compared to the actual cone whereas the non-linear biophysical model performs well over the whole intensity range used. Quantitative analysis of the two approaches indicates that the non-linear biophysical model can capture 91 +/- 5% of the coherence rate (a biased measure of information rate) of the actual cone, where the linear filter only reaches 48 +/- 8%. These results demonstrate that cone photoreceptors transform an NTSI in a non-linear fashion. The comparison between current clamp and voltage clamp recordings and analysis of the behaviour of the biophysical model indicates that both the calcium feedback loop in the outer segment and the hydrolysis of cGMP are the major components that introduce the specific non-linear response properties found in the goldfish cones.
机译:自然场景中的视觉信息分布在各种强度和对比度上。这种分布必须在视网膜中压缩以匹配视网膜神经元的动态范围。在这项研究中,我们研究了视锥细胞如何执行这种压缩,并研究了哪些生理过程有助于此操作。用强度的自然时间序列(NTSI)刺激金鱼的M锥和L锥,并记录其响应。 NTSI显示的强度分布偏向较低的强度,并在高强度区域中具有较长的尾巴。锥将这种偏斜的分布转换为更对称的分布。将金鱼锥的电压响应与线性滤波器和感光器的非线性生物物理模型的电压响应进行了比较。结果表明,与实际的圆锥体相比,线性过滤器在低强度下的对比度不足,而非线性生物物理模型在整个强度范围内表现良好。两种方法的定量分析表明,非线性生物物理模型可以捕获实际锥体的相干率(信息率的有偏差度量)的91 +/- 5%,其中线性滤波器仅达到48 +/- 8 %。这些结果表明,锥体感光体以非线性方式转换NTSI。电流钳和电压钳记录之间的比较以及对生物物理模型行为的分析表明,外部段的钙反馈回路和cGMP的水解都是引入特定非线性响应特性的主要成分。金鱼锥。

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