van der Goes Marie-Sophie H, Voigts Jakob, Newman Jonathan P, Toloza Enrique H S, Brown Norma J, Murugan Pranav, Harnett Mark T
Department of Brain & Cognitive Sciences, McGovern Institute for Brain Research, Massachusetts Institute of Technology, Cambridge, United States.
Open-Ephys Inc, Atlanta, United States.
Elife. 2024 Mar 12;13:e82952. doi: 10.7554/eLife.82952.
The sense of direction is critical for survival in changing environments and relies on flexibly integrating self-motion signals with external sensory cues. While the anatomical substrates involved in head direction (HD) coding are well known, the mechanisms by which visual information updates HD representations remain poorly understood. Retrosplenial cortex (RSC) plays a key role in forming coherent representations of space in mammals and it encodes a variety of navigational variables, including HD. Here, we use simultaneous two-area tetrode recording to show that RSC HD representation is nearly synchronous with that of the anterodorsal nucleus of thalamus (ADn), the obligatory thalamic relay of HD to cortex, during rotation of a prominent visual cue. Moreover, coordination of HD representations in the two regions is maintained during darkness. We further show that anatomical and functional connectivity are consistent with a strong feedforward drive of HD information from ADn to RSC, with anatomically restricted corticothalamic feedback. Together, our results indicate a concerted global HD reference update across cortex and thalamus.
方向感对于在不断变化的环境中生存至关重要,它依赖于将自身运动信号与外部感官线索灵活整合。虽然参与头部方向(HD)编码的解剖学基础已为人所知,但视觉信息更新HD表征的机制仍知之甚少。 retrosplenial皮质(RSC)在哺乳动物形成连贯的空间表征中起关键作用,它编码各种导航变量,包括HD。在这里,我们使用同步双区域四极管记录来表明,在一个突出的视觉线索旋转期间,RSC的HD表征与丘脑前背核(ADn)的HD表征几乎同步,ADn是HD到皮质的必需丘脑中继。此外,在黑暗中两个区域的HD表征协调得以维持。我们进一步表明,解剖学和功能连接性与HD信息从ADn到RSC的强大前馈驱动一致,且具有解剖学上受限的皮质丘脑反馈。总之,我们的结果表明皮质和丘脑之间存在协调一致的全局HD参考更新。