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Functional Gradients Through The Cortex, Multisensory Integration And Scaling Laws In Brain Dynamics

机译:通过大脑动力学中的皮质,多感觉整合和缩放定律的功能梯度

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In the context of the increasing number of works on multisensory and cross-modal effects in cerebral processing, a review is made on the functional model of human brain proposed by Justo Gonzalo (1910-1986), in relation to what he called central syndrome (caused by unilateral lesion in the parieto-occipital cortex, equidistant from the visual, tactile and auditory projection areas). The syndrome is featured by a bilateral, symmetric and multisensory involvement, and by a functional depression with dynamic effects dependent on the neural mass lost and related to physiological laws of nervous excitability. Inverted or tilted vision as well as tactile and auditive inversion, under minimum stimulus, appears as a stage of incomplete integration, being almost corrected under higher stimulus or facilitation by multisensory integration. The syndrome reveals aspects of the brain dynamics that suggest a functional continuity and unity of the cortex. A functional gradients scheme was proposed in which the specificity of the cortex is distributed with a continuous variation. This syndrome is interpreted as a scale reduction in the nervous excitability of the system, the different sensory qualities being affected allometrically according to scaling laws. A continuity from lower to higher sensory functions was proposed. The sensory growth by an increase of the stimulus or by multisensory facilitation is found to follow approximately power laws, that would reflect basic laws of biological neural networks. We restrict the analysis to the visual system.
机译:在关于大脑加工中的多感官和交叉模式效应的研究越来越多的背景下,对Justo Gonzalo(1910-1986)提出的关于他所谓的中枢综合症的人脑功能模型进行了回顾。由顶枕皮层的单侧病变引起,与视觉,触觉和听觉投影区域等距。该综合征的特征是双侧,对称和多感觉受累,功能性抑郁症的动态影响取决于神经质量的丧失,并与神经兴奋性的生理规律有关。在最小刺激下,视力倒置或倾斜以及触觉和听觉倒置似乎是不完全整合的阶段,在更高的刺激或促进下通过多感觉整合几乎可以纠正。该综合症揭示了大脑动力学的各个方面,这些方面表明了皮层的功能连续性和统一性。提出了一种功能梯度方案,其中皮质的特异性以连续的变化分布。该综合征被解释为系统神经兴奋性的比例降低,根据比例定律,不同的感觉品质在异速感官上受到影响。提出了从低到高的感觉功能的连续性。发现通过刺激的增加或通过多感觉促进的感觉生长遵循近似幂定律,这将反映生物神经网络的基本定律。我们将分析限制在视觉系统上。

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