Thies Ann Marlene, Pochinok Irina, Marquardt Annette, Dorofeikova Maria, Hanganu-Opatz Ileana L, Pöpplau Jastyn A
Institute of Developmental Neurophysiology, Center for Molecular Neurobiology, Hamburg Center of Neuroscience, University Medical Center Hamburg-Eppendorf, Hamburg, Germany.
Front Neurosci. 2025 Feb 28;19:1524931. doi: 10.3389/fnins.2025.1524931. eCollection 2025.
Rodents commonly serve as model organisms for the investigation of human mental disorders by capitalizing on behavioral commonalities. However, our understanding of the developmental dynamics of complex cognitive abilities in rodents remains incomplete. In this study, we examined spatial working memory as well as odor-and texture-based decision making in mice using a delayed non-match to sample task and a two-choice set-shifting task, respectively. Mice were investigated during different stages of development: pre-juvenile, juvenile, and young adult age. We show that, while working memory abilities in mice improve with age, decision making performance peaks during juvenile age by showing a sex-independent trajectory. Moreover, cFos expression, as a first proxy for neuronal activity, shows distinct age-and brain area-specific changes that relate to task-specific behavioral performance. The distinct developmental trajectories of working memory and decision making in rodents resemble those previously reported for humans.
啮齿动物通常通过利用行为共性来作为研究人类精神障碍的模式生物。然而,我们对啮齿动物复杂认知能力的发育动态的理解仍然不完整。在本研究中,我们分别使用延迟非匹配样本任务和二选集合转换任务,研究了小鼠的空间工作记忆以及基于气味和质地的决策。在发育的不同阶段对小鼠进行了研究:幼年前期、幼年和青年期。我们发现,虽然小鼠的工作记忆能力随年龄增长而提高,但决策表现却在幼年时期达到峰值,且呈现出与性别无关的轨迹。此外,作为神经元活动的首个指标,cFos表达显示出与任务特定行为表现相关的不同年龄和脑区特异性变化。啮齿动物工作记忆和决策的不同发育轨迹与之前报道的人类轨迹相似。