Related Experiment Video
Updated: Jun 5, 2026

The Pilocarpine Model of Temporal Lobe Epilepsy and EEG Monitoring Using Radiotelemetry System in Mice
Published on: February 27, 2018
Perirhinal cortex gains control of hippocampal seizures via broad downstream circuits in male mouse models
Zhisheng Li1, Wangjialu Lu1, Yuhao Sun1
1Key Laboratory of Medical Neurobiology of the Ministry of Health of China, Institute of Pharmacology and Toxicology, College of Pharmaceutical Sciences, School of Medicine, Zhejiang University, Hangzhou, China.
Abstract:
The perirhinal cortex (PRh) has extensive interconnections with limbic structures, including the fasciola cinerea (FC), a recently identified node and therapeutic target in temporal lobe epilepsy. However, the neural circuit basis between PRh and FC in seizure progression remains unclear. Here we show that the PRh provides the principal excitatory input to the FC and plays an important role in seizure modulation in male mouse epilepsy models. PRh-FC projections are strongly activated during seizures, and their inhibition delays seizure progression. Moreover, PRh excitatory neurons bidirectionally regulate seizure development and engage multiple distinct downstream pathways, including projections to the FC, infralimbic cortex, and lateral entorhinal cortex. Notably, suppressing PRh activity produces more effective seizure attenuation than targeting individual projections. These findings identify the PRh as a critical hub that coordinates distributed circuits to control seizure progression, highlighting its potential as a therapeutic target for epilepsy treatment.

