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Impacts of statistical feedback on the flexibility-accuracy trade-offin biological systems

机译:统计反馈对灵活性-准确性折衷生物系统的影响

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摘要

Biological systems possess the ability to adapt quickly andadequately to both environmental and internal changes. This vital ability cannot be explained in terms ofconventional stochastic processes because such processes arecharacterized by atrade-off between flexibility and accuracy, that is, they either show shorttransition times (large Kramers escape rates) to broad steady-statedistributions or long transition times to sharply peaked distributions. To develop a stochastic theory for systemsexhibiting both flexibility and accuracy, we study systems under the impact of white noise multiplied with anaccordant statistical measure, here the probability density. Thisresults in negative feedback and circular causality: the more probable a stable state the lessit will be affected by noise and, conversely, the less a stable state is affected by noisethe more probable it is. Using nonlinear Fokker-Planckequations, steady states are computed via transformations ofsolutions of the corresponding linear Fokker-Planck equations. Transients reveal rapidly evolving and sharply peaked probability densities and thus mimic systems characterized by both flexibility and accuracy.
机译:生物系统具有快速,充分适应环境和内部变化的能力。不能用常规随机过程来解释这种至关重要的能力,因为这种过程的特征是灵活性和准确性之间的折衷,也就是说,它们要么显示过渡时间短(较大的Kramers逃逸率)到宽稳态分布,要么显示很长的过渡时间到尖峰。分布。为了开发一种兼具灵活性和准确性的系统的随机理论,我们研究了在白噪声的影响下乘以相应的统计量度(此处为概率密度)的系统。这导致负反馈和循环因果关系:稳定状态越可能受噪声影响的程度越小,相反,稳定状态受噪声影响的可能性就越小。使用非线性Fokker-Planck方程,通过相应线性Fokker-Planck方程解的转换来计算稳态。瞬态揭示了迅速发展且急剧达到峰值的概率密度,因此模拟了同时具有灵活性和准确性的系统。

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