Department of Neurobiology, Rappaport Research Institute and Faculty of Medicine, Technion - Israel Institute of Technology, 1 Efron Street, Haifa 3525422, Israel.
Department of Neurobiology, Weizmann Institute of Science, Rehovot 76100, Israel.
Curr Biol. 2021 Jun 21;31(12):2592-2602.e4. doi: 10.1016/j.cub.2021.04.029. Epub 2021 May 10.
Birds strongly rely on spatial memory and navigation. Therefore, it is of utmost interest to reveal how space is represented in the avian brain. Here we used tetrodes to record neurons from the hippocampal formation of Japanese quails-a ground-dwelling species-while the quails roamed in an open-field arena. Whereas spatially modulated cells (place cells, grid cells, border cells) were generally not encountered, the firing rate of about 12% of the neurons was unimodally and significantly modulated by the head azimuth-i.e., these were head-direction cells (HD cells). Typically, HD cells were maximally active at one preferred direction and minimally at the opposite null direction, with preferred directions spanning all 360° across the population. The preferred direction was independent of the animal's position and speed and was stable during the recording session. The HD tuning was broader compared to that of HD cells in rodents, and most cells had non-zero baseline firing in all directions. However, similar to findings in rodents, the HD tuning usually rotated with the rotation of a salient visual cue in the arena. Thus, these findings support the existence of an allocentric HD representation in the quail hippocampal formation and provide the first demonstration of HD cells in birds.
鸟类强烈依赖空间记忆和导航。因此,揭示鸟类大脑中如何表示空间是至关重要的。在这里,我们使用四极管记录了日本鹌鹑(一种地面栖息的物种)在开阔场地中漫游时海马结构中的神经元。虽然没有遇到空间调制细胞(位置细胞、网格细胞、边界细胞),但约 12%的神经元的放电率呈单峰且显著受头方位调制——即这些是头方向细胞(HD 细胞)。通常,HD 细胞在一个首选方向上最大程度地活跃,而在相反的零方向上最小程度地活跃,在整个种群中,首选方向跨越 360°。首选方向与动物的位置和速度无关,并且在记录过程中是稳定的。与啮齿动物中的 HD 细胞相比,HD 调谐更宽,并且大多数细胞在所有方向上都有非零的基线放电。然而,与啮齿动物中的发现类似,HD 调谐通常随着竞技场中显著视觉线索的旋转而旋转。因此,这些发现支持在鹌鹑海马结构中存在一种以自我为中心的 HD 表示,并首次证明了鸟类中存在 HD 细胞。