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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Head Direction Cell Activity Is Absent in Mice without the Horizontal Semicircular Canals
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Head Direction Cell Activity Is Absent in Mice without the Horizontal Semicircular Canals

机译:没有水平半规管的小鼠的头方向细胞活动不存在

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Head direction (HD) cells fire when an animal faces a particular direction in its environment, and they are thought to represent the neural correlate of the animal's perceived spatial orientation. Previous studies have shown that vestibular information is critical for generating the HD signal but have not delineated whether information from all three semicircular canals or just the horizontal canals, which are primarily sensitive to angular head rotation in the horizontal (yaw) plane, are critical for the signal. Here, we monitored cell activity in the anterodorsal thalamus (ADN), an area known to contain HD cells, in epstatic circler (Ecl) mice, which have a bilateral malformation of the horizontal (lateral) semicircular canals. Ecl mice and their littermates that did not express the mutation (controls) were implanted with recording electrodes in the ADN. Results confirm the important role the horizontal canals play in forming the HD signal. Although normal HD cell activity (Raleigh's r > 0.4) was recorded in control mice, no such activity was found in Ecl mice, although some cells had activity that was mildly modulated by HD (0.4 > r > 0.2). Importantly, we also observed activity in Ecl mice that was best characterized as bursty-a pattern of activity similar to an HD signal but without any preferred firing direction. These results suggest that the neural structure for the HD network remains intact in Ecl mice, but the absence of normal horizontal canals results in an inability to control the network properly and brings about an unstable HD signal.
机译:当动物面对其环境中的特定方向时,头向(HD)细胞就会发射,并且它们被认为代表了动物感知的空间方向的神经关联。先前的研究表明,前庭信息对于产生HD信号至关重要,但尚未说明来自对水头(偏航)平面的角头旋转主要敏感的所有三个半圆管或仅水平管的信息是否对这些信号至关重要信号。在这里,我们在水平(横向)半圆形管的双侧畸形的静电环行(Ecl)小鼠中监测了已知包含HD细胞的前丘脑(ADN)中的细胞活性。将不表达突变的Ecl小鼠及其同窝小鼠(对照)植入ADN中的记录电极。结果证实了水平管在形成高清信号中的重要作用。尽管在对照小鼠中记录了正常的HD细胞活性(Raleigh r> 0.4),但在Ecl小鼠中未发现这种活性,尽管某些细胞具有受HD轻度调节的活性(0.4> r> 0.2)。重要的是,我们还观察到Ecl小鼠的活动被最好地描述为爆发性-一种类似于HD信号但没有任何优选激发方向的活动模式。这些结果表明,高清网络的神经结构在Ecl小鼠中保持完整,但是缺少正常水平管会导致无法正确控制网络并产生不稳定的高清信号。

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