Theory of morphodynamic information processing: Linking sensing to behaviour.

IF 1.5 4区 心理学 Q4 NEUROSCIENCES
Mikko Juusola, Jouni Takalo, Joni Kemppainen, Keivan Razban Haghighi, Ben Scales, James McManus, Alice Bridges, HaDi MaBouDi, Lars Chittka
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引用次数: 0

Abstract

The traditional understanding of brain function has predominantly focused on chemical and electrical processes. However, new research in fruit fly (Drosophila) binocular vision reveals ultrafast photomechanical photoreceptor movements significantly enhance information processing, thereby impacting a fly's perception of its environment and behaviour. The coding advantages resulting from these mechanical processes suggest that similar physical motion-based coding strategies may affect neural communication ubiquitously. The theory of neural morphodynamics proposes that rapid biomechanical movements and microstructural changes at the level of neurons and synapses enhance the speed and efficiency of sensory information processing, intrinsic thoughts, and actions by regulating neural information in a phasic manner. We propose that morphodynamic information processing evolved to drive predictive coding, synchronising cognitive processes across neural networks to match the behavioural demands at hand effectively.

形态动力信息处理理论:将感知与行为联系起来
对脑功能的传统理解主要集中在化学和电过程上。然而,一项关于果蝇双眼视觉的新研究表明,超快的光感受器运动显著增强了信息处理,从而影响了果蝇对环境和行为的感知。这些机械过程产生的编码优势表明,类似的基于物理运动的编码策略可能无处不在地影响神经通信。神经形态动力学理论认为,神经元和突触水平上的快速生物力学运动和微观结构变化通过阶段性地调节神经信息,提高了感觉信息处理、内在思想和行动的速度和效率。我们提出,形态动力学信息处理进化为驱动预测编码,同步跨神经网络的认知过程,以有效地匹配手头的行为需求。
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来源期刊
Vision Research
Vision Research 医学-神经科学
CiteScore
3.70
自引率
16.70%
发文量
111
审稿时长
66 days
期刊介绍: Vision Research is a journal devoted to the functional aspects of human, vertebrate and invertebrate vision and publishes experimental and observational studies, reviews, and theoretical and computational analyses. Vision Research also publishes clinical studies relevant to normal visual function and basic research relevant to visual dysfunction or its clinical investigation. Functional aspects of vision is interpreted broadly, ranging from molecular and cellular function to perception and behavior. Detailed descriptions are encouraged but enough introductory background should be included for non-specialists. Theoretical and computational papers should give a sense of order to the facts or point to new verifiable observations. Papers dealing with questions in the history of vision science should stress the development of ideas in the field.
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