Key Laboratory of Brain Functional Genomics (Ministry of Education and Shanghai), School of Life Science, East China Normal University, Shanghai, 200062, China.
Department of Physical Therapy, University of Maryland Eastern Shore, Princess Anne, MD 21853, USA.
Cereb Cortex. 2017 Dec 1;27(12):5568-5578. doi: 10.1093/cercor/bhw324.
Physiological and behavioral studies in cats show that corticotectal inputs play a critical role in the information-processing capabilities of neurons in the deeper layers of the superior colliculus (SC). Among them, the sensory inputs from functionally related associational cortices are especially critical for SC multisensory integration. However, the underlying mechanism supporting this influence is still unclear. Here, results demonstrate that deactivation of relevant cortices can both dislocate SC visual and auditory spatial receptive fields (RFs) and decrease their overall size, resulting in reduced alignment. Further analysis demonstrated that this RF separation is significantly correlated with the decrement of neurons' multisensory enhancement and is most pronounced in low stimulus intensity conditions. In addition, cortical deactivation could influence the degree of stimulus effectiveness, thereby illustrating the means by which higher order cortices may modify the multisensory activity of SC.
猫的生理和行为研究表明,皮质顶盖输入在深层上丘(SC)神经元的信息处理能力中起着关键作用。其中,来自功能相关联合皮质的感觉输入对 SC 多感觉整合尤其重要。然而,支持这种影响的潜在机制尚不清楚。在这里,结果表明,相关皮质的失活既可以使 SC 的视觉和听觉空间感受野(RF)发生位移,又可以减小它们的整体大小,从而导致对齐程度降低。进一步的分析表明,这种 RF 分离与神经元多感觉增强的减少显著相关,在低刺激强度条件下最为明显。此外,皮质失活会影响刺激效果的程度,从而说明了高级皮质可能调节 SC 多感觉活动的方式。