Jankowski Maciej M, Passecker Johannes, Islam Md Nurul, Vann Seralynne, Erichsen Jonathan T, Aggleton John P, O'Mara Shane M
Institute of Neuroscience, Trinity College Dublin Dublin, Ireland.
School of Psychology, Cardiff University Cardiff, UK.
Front Behav Neurosci. 2015 Oct 13;9:256. doi: 10.3389/fnbeh.2015.00256. eCollection 2015.
Damage involving the anterior thalamic and adjacent rostral thalamic nuclei may result in a severe anterograde amnesia, similar to the amnesia resulting from damage to the hippocampal formation. Little is known, however, about the information represented in these nuclei. To redress this deficit, we recorded units in three rostral thalamic nuclei in freely-moving rats [the parataenial nucleus (PT), the anteromedial nucleus (AM) and nucleus reuniens NRe]. We found units in these nuclei possessing previously unsuspected spatial properties. The various cell types show clear similarities to place cells, head direction cells, and perimeter/border cells described in hippocampal and parahippocampal regions. Based on their connectivity, it had been predicted that the anterior thalamic nuclei process information with high spatial and temporal resolution while the midline nuclei have more diffuse roles in attention and arousal. Our current findings strongly support the first prediction but directly challenge or substantially moderate the second prediction. The rostral thalamic spatial cells described here may reflect direct hippocampal/parahippocampal inputs, a striking finding of itself, given the relative lack of place cells in other sites receiving direct hippocampal formation inputs. Alternatively, they may provide elemental thalamic spatial inputs to assist hippocampal spatial computations. Finally, they could represent a parallel spatial system in the brain.
涉及丘脑前核及相邻丘脑嘴侧核的损伤可能导致严重的顺行性遗忘,类似于海马结构损伤所致的遗忘。然而,对于这些核团所代表的信息却知之甚少。为了弥补这一不足,我们在自由活动的大鼠的三个丘脑嘴侧核团[旁室核(PT)、前内侧核(AM)和 reunien 核(NRe)]中记录了神经元活动。我们发现这些核团中的神经元具有此前未被怀疑的空间特性。各种细胞类型与海马和海马旁回区域中描述的位置细胞、头部方向细胞以及边界/边缘细胞有明显的相似之处。基于它们的连接性,有人预测丘脑前核以高空间和时间分辨率处理信息,而中线核在注意力和觉醒方面发挥更广泛的作用。我们目前的研究结果强烈支持第一个预测,但直接挑战或大幅修正了第二个预测。这里描述的丘脑嘴侧空间细胞可能反映了直接的海马/海马旁回输入,鉴于在其他接受直接海马结构输入的部位相对缺乏位置细胞,这一发现本身就很引人注目。或者,它们可能提供基本的丘脑空间输入以协助海马的空间计算。最后,它们可能代表大脑中的一个平行空间系统。