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Geometric Cues Influence Head Direction Cells Only Weakly in Nondisoriented Rats

机译:几何提示仅影响未定向大鼠的头部方向细胞。

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摘要

The influential hypothesis that environmental geometry is critical for spatial orientation has been extensively tested behaviorally, and yet findings have been conflicting. Head direction (HD) cells, the neural correlate of the sense of direction, offer a window into the processes underlying directional orientation and may help clarify the issue. In the present study, HD cells were recorded as rats foraged in enclosures of varying geometry, with or without simultaneous manipulation of landmarks and self-motion cues (path integration). All geometric enclosures had single-order rotational symmetry and thus completely polarized the environment. They also had unique features, such as corners, which could, in principle, act as landmarks. Despite these strongly polarizing geometric cues, HD cells in nondisoriented rats never rotated with these shapes. In contrast, when a cue card (white or gray) was added to one wall, HD cells readily rotated with the enclosure. When path integration was disrupted by disorienting the rat, HD cells rotated with the enclosure even without the landmark. Collectively, these findings indicate that geometry exerts little or no influence on heading computations in nondisoriented rats, but it can do so in disoriented rats. We suggest that geometric processing is only a weak influence, providing a backup system for heading calculations and recruited only under conditions of disorientation.
机译:在环境上,对环境几何形状对于空间取向至关重要的影响性假设进行了广泛的行为测试,但发现却相互矛盾。头方向(HD)细胞是方向感的神经相关因素,它为深入了解方向定向的过程提供了一个窗口,并可能有助于阐明问题。在本研究中,将高清细胞记录为在不同几何形状的围栏中觅食的大鼠,有或没有同时操纵地标和自我运动线索(路径整合)。所有几何外壳都具有单级旋转对称性,因此完全极化了环境。它们还具有独特的功能,例如转角,原则上可以充当地标。尽管存在这些强烈极化的几何提示,但未迷失方向的大鼠中的高清细胞从未以这些形状旋转。相反,当将提示卡(白色或灰色)添加到一堵墙时,高清单元很容易随外壳旋转。当通过使大鼠迷路而破坏路径整合时,即使没有地标,高清细胞也会随着外壳旋转。总的来说,这些发现表明几何形状对未迷失方向的大鼠的航向计算几乎没有影响,但在迷失方向的大鼠中却可以。我们建议几何加工只是一个微弱的影响,它提供了一个用于航向计算的备用系统,并且仅在迷失方向的情况下才被征募。

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