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在自由活动的毛丝鼠中,半规管闭塞后头部方向细胞信号的破坏。

Disruption of the head direction cell signal after occlusion of the semicircular canals in the freely moving chinchilla.

作者信息

Muir Gary M, Brown Joel E, Carey John P, Hirvonen Timo P, Della Santina Charles C, Minor Lloyd B, Taube Jeffrey S

机构信息

Department of Psychological and Brain Sciences, Dartmouth College, Hanover, New Hampshire 03755, USA.

出版信息

J Neurosci. 2009 Nov 18;29(46):14521-33. doi: 10.1523/JNEUROSCI.3450-09.2009.

Abstract

Head direction (HD) cells in the rat anterodorsal thalamic nucleus (ADN) fire relative to the animal's directional heading. Lesions of the entire vestibular labyrinth have been shown to severely alter VIIIth nerve input and disrupt these HD signals. To assess the specific contributions of the semicircular canals without altering tonic VIIIth nerve input, ADN cells were recorded from chinchillas after bilateral semicircular canal occlusion. Although ADN HD cells (and also hippocampal place cells and theta cells) were identified in intact chinchillas, no direction-specific activity was seen after canal occlusions. Instead, "bursty" cells were observed that exhibited burst-firing patterns similar to normal HD cells but with firing unrelated to the animal's actual head direction. Importantly, when pairs of bursty cells were recorded, the temporal order of their firing was dependent on the animal's turning direction, as is the case for pairs of normal HD cells. These results suggest that bursty cells are actually disrupted HD cells. The present findings further suggest that the HD cell network is still able to generate spiking activity after canal occlusions, but the semicircular canal input is critical for updating the network activity in register with changes in the animal's HD.

摘要

大鼠前背侧丘脑核(ADN)中的头部方向(HD)细胞相对于动物的定向头部朝向进行放电。研究表明,整个前庭迷路的损伤会严重改变第八对脑神经的输入并破坏这些HD信号。为了评估半规管的特定作用而不改变第八对脑神经的紧张性输入,在双侧半规管闭塞后,从龙猫中记录ADN细胞。尽管在完整的龙猫中识别出了ADN HD细胞(以及海马位置细胞和θ细胞),但在半规管闭塞后未观察到方向特异性活动。相反,观察到了“爆发性”细胞,它们表现出与正常HD细胞相似的爆发式放电模式,但放电与动物的实际头部方向无关。重要的是,当记录成对的爆发性细胞时,它们放电的时间顺序取决于动物的转向方向,正常HD细胞对也是如此。这些结果表明,爆发性细胞实际上是被破坏的HD细胞。目前的研究结果进一步表明,在半规管闭塞后,HD细胞网络仍能产生尖峰活动,但半规管输入对于根据动物HD的变化来更新网络活动至关重要。

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