Preston-Ferrer Patricia, Coletta Stefano, Frey Markus, Burgalossi Andrea
Werner-Reichardt Centre for Integrative Neuroscience, Tübingen, Germany.
Elife. 2016 Jun 10;5:e14592. doi: 10.7554/eLife.14592.
Neurons coding for head-direction are crucial for spatial navigation. Here we explored the cellular basis of head-direction coding in the rat dorsal presubiculum (PreS). We found that layer2 is composed of two principal cell populations (calbindin-positive and calbindin-negative neurons) which targeted the contralateral PreS and retrosplenial cortex, respectively. Layer3 pyramidal neurons projected to the medial entorhinal cortex (MEC). By juxtacellularly recording PreS neurons in awake rats during passive-rotation, we found that head-direction responses were preferentially contributed by layer3 pyramidal cells, whose long-range axons branched within layer3 of the MEC. In contrast, layer2 neurons displayed distinct spike-shapes, were not modulated by head-direction but rhythmically-entrained by theta-oscillations. Fast-spiking interneurons showed only weak directionality and theta-rhythmicity, but were significantly modulated by angular velocity. Our data thus indicate that PreS neurons differentially contribute to head-direction coding, and point to a cell-type- and layer-specific routing of directional and non-directional information to downstream cortical targets.
编码头部方向的神经元对空间导航至关重要。在此,我们探究了大鼠背侧内嗅前区(PreS)中头部方向编码的细胞基础。我们发现,第2层由两个主要细胞群(钙结合蛋白阳性和钙结合蛋白阴性神经元)组成,它们分别靶向对侧的PreS和压后皮质。第3层锥体神经元投射至内侧内嗅皮质(MEC)。通过在清醒大鼠被动旋转过程中对PreS神经元进行细胞旁记录,我们发现头部方向反应主要由第3层锥体细胞产生,其长轴突在MEC的第3层内分支。相比之下,第2层神经元表现出独特的峰电位形状,不受头部方向调制,但受θ振荡节律性夹带。快速发放中间神经元仅表现出微弱的方向性和θ节律性,但受角速度显著调制。因此,我们的数据表明PreS神经元对头部方向编码有不同贡献,并指出方向性和非方向性信息向皮质下游靶标的细胞类型和层特异性路由。