首页> 美国卫生研究院文献>The Journal of Neuroscience >Head Direction Cell Activity in Mice: Robust Directional Signal Depends on Intact Otolith Organs
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Head Direction Cell Activity in Mice: Robust Directional Signal Depends on Intact Otolith Organs

机译:小鼠的头部方向细胞活动:强大的方向信号取决于完整的耳石器官。

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摘要

The head direction (HD) cell signal is a representation of an animal's perceived directional heading with respect to its environment. This signal appears to originate in the vestibular system, which includes the semicircular canals and otolith organs. Preliminary studies indicate the semicircular canals provide a necessary component of the HD signal, but involvement of otolithic information in the HD signal has not been tested. The present study was designed to determine the otolithic contribution to the HD signal, as well as to compare HD cell activity of mice with that of rats. HD cell activity in the anterodorsal thalamus was assessed in wild-type C57BL/6J and otoconia-deficient tilted mice during locomotion within a cylinder containing a prominent visual landmark. HD cell firing properties in C57BL/6J mice were generally similar to those in rats. However, in C57BL/6J mice, landmark rotation failed to demonstrate dominant control of the HD signal in 36% of the sessions. In darkness, directional firing became unstable during 42% of the sessions, but landmark control was not associated with HD signal stability in darkness. HD cells were identified in tilted mice, but directional firing properties were not as robust as those of C57BL/6J mice. Most HD cells in tilted mice were controlled by landmark rotation but showed substantial signal degradation across trials. These results support current models that suggest otolithic information is involved in the perception of directional heading. Furthermore, compared with rats, the HD signal in mice appears to be less reliably anchored to prominent environmental cues.
机译:头部方向(HD)细胞信号表示动物相对于其环境的定向方向。该信号似乎起源于前庭系统,该系统包括半规管和耳石器官。初步研究表明,半圆形管提供了HD信号的必要组成部分,但尚未测试耳石信息在HD信号中的参与。本研究旨在确定耳石对HD信号的贡献,并比较小鼠和大鼠的HD细胞活性。在包含显着视觉界标的圆柱体内运动期间,在野生型C57BL / 6J和耳畸形缺陷倾斜小鼠中评估了前丘脑的高清细胞活性。 C57BL / 6J小鼠的高清细胞射击特性通常与大鼠相似。但是,在C57BL / 6J小鼠中,界标旋转未能在36%的疗程中表现出对HD信号的显性控制。在黑暗中,定向发射在42%的会话中变得不稳定,但界标控制与黑暗中高清信号的稳定性无关。在倾斜的小鼠中鉴定出HD细胞,但定向发射特性不如C57BL / 6J小鼠强。倾斜小鼠中的大多数HD细胞受界标旋转控制,但在整个试验中均显示出明显的信号降解。这些结果支持当前的模型,表明耳石信息与定向航向有关。此外,与大鼠相比,小鼠中的高清信号似乎不太可靠地锚定在重要的环境线索上。

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