Fyhn Marianne, Molden Sturla, Witter Menno P, Moser Edvard I, Moser May-Britt
Centre for the Biology of Memory, Medical-Technical Research Centre, Norwegian University of Science and Technology, 7489 Trondheim, Norway.
Science. 2004 Aug 27;305(5688):1258-64. doi: 10.1126/science.1099901.
As the interface between hippocampus and neocortex, the entorhinal cortex is likely to play a pivotal role in memory. To determine how information is represented in this area, we measured spatial modulation of neural activity in layers of medial entorhinal cortex projecting to the hippocampus. Close to the postrhinal-entorhinal border, entorhinal neurons had stable and discrete multipeaked place fields, predicting the rat's location as accurately as place cells in the hippocampus. Precise positional modulation was not observed more ventromedially in the entorhinal cortex or upstream in the postrhinal cortex, suggesting that sensory input is transformed into durable allocentric spatial representations internally in the dorsocaudal medial entorhinal cortex.
作为海马体与新皮层之间的接口,内嗅皮层可能在记忆中发挥关键作用。为了确定该区域如何表征信息,我们测量了投射至海马体的内侧内嗅皮层各层神经活动的空间调制。在内嗅皮层与鼻后皮层的边界附近,内嗅神经元具有稳定且离散的多峰位置野,其对大鼠位置的预测精度与海马体中的位置细胞相当。在内嗅皮层更腹内侧或鼻后皮层上游未观察到精确的位置调制,这表明感觉输入在背尾侧内侧内嗅皮层内部被转化为持久的以自我为中心的空间表征。