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Efficiency of Synaptic Transmission of Single-Photon Events from Rod Photoreceptor to Rod Bipolar Dendrite

机译:单光子事件从杆感光器到杆双极树突突触传递的效率。

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摘要

A rod transmits absorption of a single photon by what appears to be a small reduction in the small number of quanta of neurotransmitter (Qcount) that it releases within the integration period (∼0.1 s) of a rod bipolar dendrite. Due to the quantal and stochastic nature of release, discrete distributions of Qcount for darkness versus one isomerization of rhodopsin (R*) overlap. We suggested that release must be regular to narrow these distributions, reduce overlap, reduce the rate of false positives, and increase transmission efficiency (the fraction of R* events that are identified as light). Unsurprisingly, higher quantal release rates (Qrates) yield higher efficiencies. Focusing here on the effect of small changes in Qrate, we find that a slightly higher Qrate yields greatly reduced efficiency, due to a necessarily fixed quantal-count threshold. To stabilize efficiency in the face of drift in Qrate, the dendrite needs to regulate the biochemical realization of its quantal-count threshold with respect to its Qcount. These considerations reveal the mathematical role of calcium-based negative feedback and suggest a helpful role for spontaneous R*. In addition, to stabilize efficiency in the face of drift in degree of regularity, efficiency should be ≈50%, similar to measurements.
机译:杆通过在双极树突的积分周期(〜0.1 s)内释放的少量神经递质(Qcount)数量的减少而传输单个光子的吸收。由于释放的数量和随机性,视紫红质(R *)的一种异构化与黑暗的Qcount离散分布重叠。我们建议释放必须规则以缩小这些分布,减少重叠,降低误报率并提高传输效率(R *事件被识别为轻度的部分)。毫不奇怪,较高的定量释放速率(Qrates)可产生较高的效率。在这里集中讨论Qrate的微小变化的影响,我们发现,由于必须固定的数量计数阈值,略高的Qrate会大大降低效率。为了在Qrate发生漂移时稳定效率,树枝状晶体需要相对于Qcount调节其数量计数阈值的生化实现。这些考虑揭示了钙基负反馈的数学作用,并提示了自发R *的有用作用。此外,要在面对规则程度的漂移时稳定效率,类似于测量值,效率应为≈50%。

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