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首页> 外文期刊>The Journal of Physiology >Optimal processing of photoreceptor signals is required to maximize behavioural sensitivity.
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Optimal processing of photoreceptor signals is required to maximize behavioural sensitivity.

机译:需要对感光体信号进行最佳处理,以使行为敏感性最大化。

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摘要

The sensitivity of receptor cells places a fundamental limit upon the sensitivity of sensory systems. For example, the signal-to-noise ratio of sensory receptors has been suggested to limit absolute thresholds in the visual and auditory systems. However, the necessity of optimally processing sensory receptor signals for behaviour to approach this limit has received less attention. We investigated the behavioural consequences of increasing the signal-to-noise ratio of the rod photoreceptor single-photon response in a transgenic mouse, the GCAPs-/- knockout. The loss of fast Ca2+ feedback to cGMP synthesis in phototransduction for GCAPs-/- mice increases the magnitude of the rod single-photon response and dark noise, with the increase in size of the single-photon response outweighing the increase in noise. Surprisingly, despite the increased rod signal-to-noise ratio, behavioural performance for GCAPs-/- mice was diminished near absolute visual threshold. We demonstrate in electrophysiological recordings that the diminished performance compared to wild-type mice is explained by poorly tuned postsynaptic processing of the rod single-photon response at the rod bipolar cell. In particular, the level of postsynaptic saturation in GCAPs-/- rod bipolar cells is not sufficient to eliminate rod noise, and degrades the single-photon response signal-to-noise ratio. Thus, it is critical for retinal processing to be optimally tuned near absolute threshold; otherwise the visual system fails to utilize fully the signals present in the rods.
机译:受体细胞的敏感性对感觉系统的敏感性提出了根本的限制。例如,已经提出感觉受体的信噪比限制视觉和听觉系统中的绝对阈值。然而,为达到接近这一极限而对行为进行最佳处理的感受器信号的必要性已受到较少的关注。我们研究了在转基因小鼠GCAPs //-敲除中增加杆感光器单光子响应的信噪比的行为后果。对于GCAPs //-小鼠,在光转导中快速的Ca2 +反馈对cGMP合成的损失增加了棒状单光子响应和暗噪声的强度,单光子响应的大小超过了噪声的增加。出乎意料的是,尽管杆的信噪比增加了,但GCAPs //-小鼠的行为表现却在绝对视觉阈值附近降低了。我们在电生理记录中证明,与野生型小鼠相比性能下降是由杆双极细胞杆单光子响应的微调突触后突触加工解释的。特别地,GCAPs //杆双极细胞中突触后饱和的水平不足以消除杆噪声,并降低了单光子响应信噪比。因此,将视网膜处理最佳地调整到绝对阈值附近至关重要。否则,视觉系统无法充分利用杆中存在的信号。

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