Neural convergence and divergence in the mammalian cerebral cortex: From experimental neuroanatomy to functional neuroimaging

神经科学 感觉系统 刺激形态 神经解剖学 体感系统 神经影像学 生物 大脑皮层 神经功能成像 刺激(心理学) 心理学 认知心理学
作者
Kingson Man,Jonas Kaplan,Hanna Damásio,António R. Damásio
出处
期刊:Journal of comparative neurology [Wiley]
卷期号:521 (18): 4097-4111 被引量:95
标识
DOI:10.1002/cne.23408
摘要

A development essential for understanding the neural basis of complex behavior and cognition is the description, during the last quarter of the twentieth century, of detailed patterns of neuronal circuitry in the mammalian cerebral cortex. This effort established that sensory pathways exhibit successive levels of convergence, from the early sensory cortices to sensory-specific and multisensory association cortices, culminating in maximally integrative regions. It was also established that this convergence is reciprocated by successive levels of divergence, from the maximally integrative areas all the way back to the early sensory cortices. This article first provides a brief historical review of these neuroanatomical findings, which were relevant to the study of brain and mind-behavior relationships and to the proposal of heuristic anatomofunctional frameworks. In a second part, the article reviews new evidence that has accumulated from studies of functional neuroimaging, employing both univariate and multivariate analyses, as well as electrophysiology, in humans and other mammals, that the integration of information across the auditory, visual, and somatosensory-motor modalities proceeds in a content-rich manner. Behaviorally and cognitively relevant information is extracted from and conserved across the different modalities, both in higher order association cortices and in early sensory cortices. Such stimulus-specific information is plausibly relayed along the neuroanatomical pathways alluded to above. The evidence reviewed here suggests the need for further in-depth exploration of the intricate connectivity of the mammalian cerebral cortex in experimental neuroanatomical studies.
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