Mao Dun, Kandler Steffen, McNaughton Bruce L, Bonin Vincent
Neuro-Electronics Research Flanders, Kapeldreef 75, Leuven, B-3001, Belgium.
Canadian Centre for Behavioural Neuroscience, Department of Neuroscience, University of Lethbridge, 4401 University Drive, Lethbridge, Canada, AB T1K 3M4.
Nat Commun. 2017 Aug 15;8(1):243. doi: 10.1038/s41467-017-00180-9.
Sparse orthogonal coding is a key feature of hippocampal neural activity, which is believed to increase episodic memory capacity and to assist in navigation. Some retrosplenial cortex (RSC) neurons convey distributed spatial and navigational signals, but place-field representations such as observed in the hippocampus have not been reported. Combining cellular Ca imaging in RSC of mice with a head-fixed locomotion assay, we identified a population of RSC neurons, located predominantly in superficial layers, whose ensemble activity closely resembles that of hippocampal CA1 place cells during the same task. Like CA1 place cells, these RSC neurons fire in sequences during movement, and show narrowly tuned firing fields that form a sparse, orthogonal code correlated with location. RSC 'place' cell activity is robust to environmental manipulations, showing partial remapping similar to that observed in CA1. This population code for spatial context may assist the RSC in its role in memory and/or navigation.Neurons in the retrosplenial cortex (RSC) encode spatial and navigational signals. Here the authors use calcium imaging to show that, similar to the hippocampus, RSC neurons also encode place cell-like activity in a sparse orthogonal representation, partially anchored to the allocentric cues on the linear track.
稀疏正交编码是海马体神经活动的一个关键特征,据信它能增加情景记忆容量并有助于导航。一些 retrosplenial 皮质(RSC)神经元传递分布式空间和导航信号,但尚未有像在海马体中观察到的位置场表征的相关报道。将小鼠 RSC 中的细胞钙成像与头部固定运动分析相结合,我们识别出了一群主要位于浅层的 RSC 神经元,在同一任务期间,它们的整体活动与海马体 CA1 位置细胞的活动极为相似。与 CA1 位置细胞一样,这些 RSC 神经元在运动过程中按顺序放电,并表现出狭窄调谐的放电场,形成与位置相关的稀疏正交编码。RSC“位置”细胞活动对环境操纵具有鲁棒性,表现出与在 CA1 中观察到的类似的部分重映射。这种空间背景的群体编码可能有助于 RSC 在记忆和/或导航中发挥作用。 retrosplenial 皮质(RSC)中的神经元编码空间和导航信号。在此,作者使用钙成像表明,与海马体类似,RSC 神经元也以稀疏正交表征编码类似位置细胞的活动,部分锚定在线性轨道上的以自我为中心的线索上。