Department of Psychological and Brain Sciences, Dartmouth College, Hanover, New Hampshire 03755, USA.
J Neurophysiol. 2012 Nov;108(10):2767-84. doi: 10.1152/jn.00295.2012. Epub 2012 Aug 8.
Neural activity in several limbic areas varies as a function of the animal's head direction (HD) in the horizontal plane. Lesions of the vestibular periphery abolish this HD cell signal, suggesting an essential role for vestibular afference in HD signal generation. The organization of brain stem pathways conveying vestibular information to the HD circuit is poorly understood; however, recent anatomical work has identified the supragenual nucleus (SGN) as a putative relay. To test this hypothesis, we made lesions of the SGN in rats and screened for HD cells in the anterodorsal thalamus. In animals with complete bilateral lesions, the overall number of HD cells was significantly reduced relative to control animals. In animals with unilateral lesions of the SGN, directional activity was present, but the preferred firing directions of these cells were unstable and less influenced by the rotation of an environmental landmark. In addition, we found that preferred directions displayed large directional shifts when animals foraged for food in a darkened environment and when they were navigating from a familiar environment to a novel one, suggesting that the SGN plays a critical role in projecting essential self-motion (idiothetic) information to the HD cell circuit.
几个边缘区域的神经活动随动物在水平面上的头方向(HD)而变化。前庭外周的损伤消除了这种 HD 细胞信号,表明前庭传入在 HD 信号产生中起重要作用。将前庭信息传递到 HD 电路的脑干通路的组织尚不清楚;然而,最近的解剖学工作已经确定了上颈核(SGN)作为一个潜在的中继。为了验证这一假设,我们在大鼠中进行了 SGN 损伤,并在背侧丘脑前核中筛选出 HD 细胞。在双侧完全损伤的动物中,HD 细胞的总数明显低于对照动物。在 SGN 单侧损伤的动物中,存在定向活动,但这些细胞的首选发射方向不稳定,受环境地标旋转的影响较小。此外,我们发现当动物在黑暗环境中觅食或从熟悉的环境导航到新的环境时,首选方向显示出较大的方向变化,这表明 SGN 在将基本的自我运动(自身运动)信息投射到 HD 细胞电路中起着关键作用。