Max Delbrück Center for Molecular Medicine in the Helmholtz Association (MDC), Berlin, Germany.
Neuroscience Research Center, Charité-Universitätsmedizin Berlin, Charitéplatz 1, 10117 Berlin, Germany.
Cereb Cortex. 2023 Apr 4;33(8):4870-4885. doi: 10.1093/cercor/bhac386.
In the thermal system, skin cooling is represented in the primary somatosensory cortex (S1) and the posterior insular cortex (pIC). Whether S1 and pIC are nodes in anatomically separate or overlapping thermal sensorimotor pathways is unclear, as the brain-wide connectivity of the thermal system has not been mapped. We address this using functionally targeted, dual injections of anterograde viruses or retrograde tracers into the forelimb representation of S1 (fS1) and pIC (fpIC). Our data show that inputs to fS1 and fpIC originate from separate neuronal populations, supporting the existence of parallel input pathways. Outputs from fS1 and fpIC are more widespread than their inputs, sharing a number of cortical and subcortical targets. While, axonal projections were separable, they were more overlapping than the clusters of input cells. In both fS1 and fpIC circuits, there was a high degree of reciprocal connectivity with thalamic and cortical regions, but unidirectional output to the midbrain and hindbrain. Notably, fpIC showed connectivity with regions associated with thermal processing. Together, these data indicate that cutaneous thermal information is routed to the cortex via parallel circuits and is forwarded to overlapping downstream regions for the binding of somatosensory percepts and integration with ongoing behavior.
在热系统中,皮肤冷却在初级躯体感觉皮层(S1)和后岛叶皮层(pIC)中得到体现。S1 和 pIC 是否是在解剖上分离或重叠的热感觉运动通路上的节点尚不清楚,因为尚未绘制出热系统的全脑连接。我们使用功能靶向的、顺行病毒或逆行示踪剂向 S1(fS1)和 pIC(fpIC)的前肢代表区域进行双重注射来解决这个问题。我们的数据表明,fS1 和 fpIC 的输入源自于不同的神经元群体,支持并行输入途径的存在。fS1 和 fpIC 的输出比其输入更广泛,共享一些皮质和皮质下的靶区。虽然轴突投射是可分离的,但它们比输入细胞的簇更重叠。在 fS1 和 fpIC 回路中,与丘脑和皮质区域有高度的双向连接,但有单向输出到中脑和后脑。值得注意的是,fpIC 与与热处理相关的区域有连接。总之,这些数据表明,皮肤热信息通过并行回路被路由到皮层,并被转发到重叠的下游区域,以绑定躯体感觉知觉并与正在进行的行为进行整合。