Institute and Key Laboratory of Brain Functional Genomics of the Chinese Ministry of Education, Shanghai Key Laboratory of Brain Functional Genomics, School of Life Sciences, East China Normal University, Shanghai, 200062, China.
Department of Neuroscience, University of Pittsburgh, Pittsburgh, 15260, USA.
Neurosci Bull. 2022 Oct;38(10):1139-1152. doi: 10.1007/s12264-022-00855-4. Epub 2022 Apr 16.
Crossmodal information processing in sensory cortices has been reported in sparsely distributed neurons under normal conditions and can undergo experience- or activity-induced plasticity. Given the potential role in brain function as indicated by previous reports, crossmodal connectivity in the sensory cortex needs to be further explored. Using perforated whole-cell recording in anesthetized adult rats, we found that almost all neurons recorded in the primary somatosensory, auditory, and visual cortices exhibited significant membrane-potential responses to crossmodal stimulation, as recorded when brain activity states were pharmacologically down-regulated in light anesthesia. These crossmodal cortical responses were excitatory and subthreshold, and further seemed to be relayed primarily by the sensory thalamus, but not the sensory cortex, of the stimulated modality. Our experiments indicate a sensory cortical presence of widespread excitatory crossmodal inputs, which might play roles in brain functions involving crossmodal information processing or plasticity.
在正常条件下,感觉皮层中的跨模态信息处理已在稀疏分布的神经元中得到报道,并且可以经历经验或活动诱导的可塑性。鉴于之前的报告表明其在大脑功能中的潜在作用,需要进一步探索感觉皮层中的跨模态连接。使用麻醉成年大鼠的穿孔全细胞记录,我们发现,在光麻醉下药物下调脑活动状态时记录到,初级体感、听觉和视觉皮层中记录的几乎所有神经元对跨模态刺激均表现出显著的膜电位反应。这些跨模态皮层反应是兴奋性和亚阈值的,并且似乎主要是由刺激模态的感觉丘脑而不是感觉皮层传递的。我们的实验表明,感觉皮层存在广泛的兴奋性跨模态输入,这可能在涉及跨模态信息处理或可塑性的大脑功能中发挥作用。