Neuroscience Graduate Program, University of Southern California, Los Angeles, CA, USA.
Stevens Neuroimaging and Informatics Institute, Laboratory of Neuro Imaging, Keck School of Medicine, University of Southern California, Los Angeles, CA, USA.
Nat Commun. 2021 Jun 28;12(1):4004. doi: 10.1038/s41467-021-24241-2.
The superior colliculus (SC) receives diverse and robust cortical inputs to drive a range of cognitive and sensorimotor behaviors. However, it remains unclear how descending cortical input arising from higher-order associative areas coordinate with SC sensorimotor networks to influence its outputs. Here, we construct a comprehensive map of all cortico-tectal projections and identify four collicular zones with differential cortical inputs: medial (SC.m), centromedial (SC.cm), centrolateral (SC.cl) and lateral (SC.l). Further, we delineate the distinctive brain-wide input/output organization of each collicular zone, assemble multiple parallel cortico-tecto-thalamic subnetworks, and identify the somatotopic map in the SC that displays distinguishable spatial properties from the somatotopic maps in the neocortex and basal ganglia. Finally, we characterize interactions between those cortico-tecto-thalamic and cortico-basal ganglia-thalamic subnetworks. This study provides a structural basis for understanding how SC is involved in integrating different sensory modalities, translating sensory information to motor command, and coordinating different actions in goal-directed behaviors.
上丘(SC)接收来自不同皮质区的丰富而强大的皮质输入,以驱动一系列认知和感觉运动行为。然而,目前尚不清楚源自高级联合区的下行皮质输入如何与 SC 感觉运动网络协调,从而影响其输出。在这里,我们构建了一个全面的皮质顶盖投射图谱,并确定了四个具有不同皮质输入的丘区:内侧(SC.m)、中央内侧(SC.cm)、中央外侧(SC.cl)和外侧(SC.l)。此外,我们描绘了每个丘区的独特的全脑输入/输出组织,组装了多个并行的皮质-顶盖-丘脑子网,并确定了 SC 中的躯体感觉图,该图显示了与新皮层和基底节中的躯体感觉图不同的空间特性。最后,我们描述了这些皮质-顶盖-丘脑和皮质-基底节-丘脑子网之间的相互作用。这项研究为理解 SC 如何参与整合不同感觉模态、将感觉信息转换为运动指令以及协调目标导向行为中的不同动作提供了结构基础。