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A variational approach to behavioral and neuroelectrical laws

机译:行为和神经电规律的变分方法

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Variational methods play a fundamental and unifying role in several fields of physics, chemistry, engineering, economics, and biology, as they allow one to derive the behavior of a system as a consequence of an optimality principle. A possible application of these methods to a model of perception is given by considering a psychophysical law as the solution of an Euler–Lagrange equation. A general class of Lagrangians is identified by requiring the measurability of prothetic continua on interval scales. The associated Hamiltonian (the energy of the process) is tentatively connected with neurophysiological aspects. As an example of the suggested approach a particular choice of the Lagrangian, that is a sufficient condition to obtain classical psychophysical laws, while accounting for psychophysical adaptation and the stationarity of neuronal activity, is used to explore a possible relation between a behavioral law and a neuroelectrical ,response based on the Naka–Rushton model.
机译:变分方法在物理,化学,工程,经济学和生物学的多个领域中起着根本性的统一作用,因为它们允许人们根据最优性原理推导系统的行为。通过将心理物理定律作为欧拉-拉格朗日方程的解,可以将这些方法应用于感知模型。拉格朗日派的一般类别是通过要求在区间量表上确定义连续性来确定的。关联的哈密顿量(过程的能量)暂时与神经生理方面有关。作为建议方法的一个例子,拉格朗日的一种特殊选择是获得经典心理物理定律的充分条件,同时考虑了心理物理适应性和神经元活动的平稳性,被用来探索行为定律和神经活动之间的可能关系。神经电响应,基于Naka–Rushton模型。

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