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Laws of nature that define biological action and perception

机译:定义生物行动和感知的自然律法

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We describe a physical approach to biological functions, with the emphasis on the motor and sensory functions. The approach assumes the existence of biology-specific laws of nature uniting salient physical variables and parameters. In contrast to movements in inanimate nature, actions are produced by changes in parameters of the corresponding laws of nature. For movements, parameters are associated with spatial referent coordinates (RCs) for the effectors. Stability of motor actions is ensured by the abundant mapping of RCs across hierarchical control levels. The sensory function is viewed as based on an interaction of efferent and afferent signals leading to an iso-perceptual manifold where percepts of salient sensory variables are stable. This approach offers novel interpretations for a variety of known neurophysiological and behavioral phenomena and makes a number of novel testable predictions. In particular, we discuss novel interpretations for the well-known phenomena of agonist-antagonist co-activation and vibration-induced illusions of both position and force. We also interpret results of several new experiments with unintentional force changes and with analysis of accuracy of perception of variables produced by elements of multi-element systems. Recently, this approach has been expanded to interpret motor disorders including spasticity and consequences of subcortical disorders (such as Parkinson's disease). We suggest that the approach can be developed for cognitive functions. (c) 2020 Elsevier B.V. All rights reserved.
机译:我们描述了生物功能的物理方法,重点是运动和感觉功能。该方法假设存在结合显著物理变量和参数的特定于生物学的自然法则。与无生命自然中的运动不同,动作是由相应自然法则的参数变化产生的。对于运动,参数与效应器的空间参考坐标(RCs)相关联。电机动作的稳定性由RCs在分层控制水平上的丰富映射来保证。感觉功能被视为基于传出和传入信号的相互作用,从而形成一个等感知流形,其中显著感觉变量的感知是稳定的。这种方法为各种已知的神经生理学和行为现象提供了新的解释,并做出了许多新的可测试的预测。特别是,我们讨论了激动剂-拮抗剂共激活和振动诱导的位置和力量错觉的著名现象的新解释。我们还解释了几项新实验的结果,包括无意的力变化,以及对多元素系统元素产生的变量感知的准确性的分析。最近,这种方法已经扩展到解释运动障碍,包括痉挛和皮质下障碍(如帕金森病)的后果。我们认为,该方法可用于认知功能。(c) 2020爱思唯尔B.V.版权所有。

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