Ma M, Simoes de Souza F, Futia G L, Anderson S R, Riguero J, Tollin D, Gentile-Polese A, Platt J P, Hiratani N, Gibson E A, Restrepo D
Department of Cell and Developmental Biology, University of Colorado Anschutz Medical Campus, Aurora, CO, 80045, USA.
These authors contributed equally to this work.
bioRxiv. 2023 Oct 22:2023.10.01.560382. doi: 10.1101/2023.10.01.560382.
Sequential neural dynamics encoded by "time cells" play a crucial role in hippocampal function. However, the role of hippocampal sequential neural dynamics in associative learning is an open question. In this manuscript, we used two-photon Ca imaging of dorsal CA1 pyramidal neurons in head-fixed mice performing a go-no-go associative learning task. We found that pyramidal cells responded differentially to the rewarded or unrewarded stimuli. The stimuli were decoded accurately from the activity of the neuronal ensemble, and accuracy increased substantially as the animal learned to differentiate the stimuli. Decoding the stimulus from individual pyramidal cells that responded differentially revealed that decision-making took place at discrete times after stimulus presentation. Lick prediction decoded from the ensemble activity of cells in dCA1 correlated linearly with lick behavior indicating that sequential activity of pyramidal cells in dCA1 constitutes a temporal memory map used for decision-making in associative learning.
由“时间细胞”编码的序列神经动力学在海马体功能中起着至关重要的作用。然而,海马体序列神经动力学在联想学习中的作用仍是一个悬而未决的问题。在本论文中,我们对头部固定的小鼠进行了一项“是或否”联想学习任务,同时使用双光子钙成像技术对背侧CA1锥体神经元进行成像。我们发现锥体细胞对奖励或未奖励刺激有不同的反应。从神经元群体的活动中能够准确地解码出刺激,并且随着动物学会区分刺激,准确性显著提高。从对不同刺激有反应的单个锥体细胞中解码刺激,结果表明决策在刺激呈现后的离散时间发生。从dCA1区细胞的群体活动中解码出的舔舐预测与舔舐行为呈线性相关,这表明dCA1区锥体细胞的序列活动构成了一个用于联想学习中决策的时间记忆图谱。