Wang Jia, Zhang Shengnan, Liu Tiaotiao, Zheng Xuyuan, Tian Xin, Bai Wenwen
School of Biomedical Engineering and Technology, Tianjin Medical University, Tianjin, China.
Front Neurosci. 2022 Nov 23;16:1055986. doi: 10.3389/fnins.2022.1055986. eCollection 2022.
Spatial working memory is a kind of short-term memory that allows temporarily storing and manipulating spatial information. Evidence suggests that spatial working memory is processed through three distinctive phases: Encoding, maintenance, and retrieval. Though the medial prefrontal cortex (mPFC) and mediodorsal thalamus (MD) are involved in memory retrieval, how the functional interactions and information transfer between mPFC and MD remains largely unclear.
We recorded local field potentials (LFPs) from mPFC and MD while mice performed a spatial working memory task in T-maze. The temporal dynamics of functional interactions and bidirectional information flow between mPFC and MD was quantitatively assessed by using directed transfer function.
Our results showed a significantly elevated information flow from mPFC to MD, varied in time and frequency (theta in particular), accompanying successful memory retrieval.
Elevated theta information flow, a feature that was absent on error trials, indicates an important role of the directional information transfer from mPFC to MD for memory retrieval.
空间工作记忆是一种短期记忆,它允许临时存储和处理空间信息。有证据表明,空间工作记忆通过三个不同阶段进行处理:编码、维持和检索。虽然内侧前额叶皮质(mPFC)和背内侧丘脑(MD)参与记忆检索,但mPFC和MD之间的功能相互作用和信息传递方式在很大程度上仍不清楚。
我们在小鼠在T迷宫中执行空间工作记忆任务时,记录了mPFC和MD的局部场电位(LFP)。使用定向传递函数定量评估mPFC和MD之间功能相互作用和双向信息流的时间动态。
我们的结果显示,在成功的记忆检索过程中,从mPFC到MD的信息流显著增加,且随时间和频率(特别是θ波)变化。
θ信息流增加这一特征在错误试验中不存在,表明从mPFC到MD的定向信息传递在记忆检索中起重要作用。