Key Laboratory of Brain Functional Genomics (Ministry of Education and Shanghai), School of Life Science, East China Normal University, Shanghai, 200062, China.
Department of Neurobiology and Anatomy, Wake Forest School of Medicine, Winston-Salem, NC, 27157, USA.
Sci Rep. 2017 Jul 6;7(1):4772. doi: 10.1038/s41598-017-05118-1.
Multisensory neurons in animals whose cross-modal experiences are compromised during early life fail to develop the ability to integrate information across those senses. Consequently, they lack the ability to increase the physiological salience of the events that provide the convergent cross-modal inputs. The present study demonstrates that superior colliculus (SC) neurons in animals whose visual-auditory experience is compromised early in life by noise-rearing can develop visual-auditory multisensory integration capabilities rapidly when periodically exposed to a single set of visual-auditory stimuli in a controlled laboratory paradigm. However, they remain compromised if their experiences are limited to a normal housing environment. These observations seem counterintuitive given that multisensory integrative capabilities ordinarily develop during early life in normal environments, in which a wide variety of sensory stimuli facilitate the functional organization of complex neural circuits at multiple levels of the neuraxis. However, the very richness and inherent variability of sensory stimuli in normal environments will lead to a less regular coupling of any given set of cross-modal cues than does the otherwise "impoverished" laboratory exposure paradigm. That this poses no significant problem for the neonate, but does for the adult, indicates a maturational shift in the requirements for the development of multisensory integration capabilities.
在生命早期经历跨模态体验受损的动物中的多感觉神经元未能发展出整合来自这些感觉的信息的能力。因此,它们缺乏增加为其提供会聚跨模态输入的事件的生理显著性的能力。本研究表明,在生命早期通过噪声饲养使视觉-听觉体验受损的动物的上丘(SC)神经元可以在受控实验室范式中周期性地暴露于单一的视觉-听觉刺激时迅速发展出视觉-听觉多感觉整合能力。然而,如果它们的体验仅限于正常的居住环境,它们仍然会受到限制。这些观察结果似乎与直觉相悖,因为多感觉整合能力通常在正常环境中在生命早期发展,在正常环境中,各种感觉刺激促进了中枢神经系统多个水平的复杂神经回路的功能组织。然而,正常环境中感觉刺激的丰富性和固有可变性将导致任何给定的跨模态线索的耦合不如其他情况下的“贫困”实验室暴露范式那么规则。这对新生儿没有造成重大问题,但对成年人造成了问题,表明多感觉整合能力发展的要求发生了成熟转变。