Inhibitory interneurons within cortical layer 1 (L1-INs) integrate inputs from diverse brain regions to modulate sensory processing and plasticity, but the sensory inputs that recruit these interneurons have not been identified. Here, we used monosynaptic retrograde tracing and whole-cell electrophysiology to characterize the thalamic inputs onto two major subpopulations of L1-INs in the mouse auditory cortex. We find that the vast majority of auditory thalamic inputs to these L1-INs unexpectedly arise from the ventral subdivision of the medial geniculate body (MGBv), the tonotopically-organized primary auditory thalamus. Moreover, these interneurons receive robust functional monosynaptic MGBv inputs that are comparable to those recorded in the L4 excitatory pyramidal neurons. Our findings reveal a direct pathway from the primary auditory thalamus to L1-INs, positioning these interneurons to uniquely integrate precise sensory signals with top-down inputs that convey brain states and learned associations.
Primary auditory thalamus relays directly to cortical layer 1 interneurons.
初级听觉丘脑直接向皮层第 1 层中间神经元传递信号
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作者:Vattino Lucas G, Liu Christine Junhui, MacGregor Cathryn P, Sweeney Carolyn G, Minderler Steven, Takesian Anne E
| 期刊: | iScience | 影响因子: | 4.100 |
| 时间: | 2025 | 起止号: | 2025 Jun 24; 28(8):112652 |
| doi: | 10.1016/j.isci.2025.112652 | 研究方向: | 信号转导、神经科学 |
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