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Effect of the closed-loop hippocampal low-frequency stimulation on seizure severity, learning, and memory in pilocarpine epilepsy rat model.
Zare, Meysam; Rezaei, Mahmoud; Nazari, Milad; Kosarmadar, Nastaran; Faraz, Mona; Barkley, Victoria; Shojaei, Amir; Raoufy, Mohammad Reza; Mirnajafi-Zadeh, Javad.
Affiliation
  • Zare M; Department of Physiology, Faculty of Medical Sciences, Tarbiat Modares University, Tehran, Iran.
  • Rezaei M; Department of Physiology, Faculty of Medical Sciences, Tarbiat Modares University, Tehran, Iran.
  • Nazari M; Department of Technology, Electrical Engineering, Sharif University, Tehran, Iran.
  • Kosarmadar N; Department of Physiology, Faculty of Medical Sciences, Tarbiat Modares University, Tehran, Iran.
  • Faraz M; Department of Physiology, Faculty of Medical Sciences, Tarbiat Modares University, Tehran, Iran.
  • Barkley V; Department of Anesthesia and Pain Management, Toronto General Hospital, University Health Network, Toronto, Ontario, Canada.
  • Shojaei A; Department of Physiology, Faculty of Medical Sciences, Tarbiat Modares University, Tehran, Iran.
  • Raoufy MR; Department of Physiology, Faculty of Medical Sciences, Tarbiat Modares University, Tehran, Iran.
  • Mirnajafi-Zadeh J; Department of Physiology, Faculty of Medical Sciences, Tarbiat Modares University, Tehran, Iran.
CNS Neurosci Ther ; 30(3): e14656, 2024 03.
Article in En | MEDLINE | ID: mdl-38439573
ABSTRACT

AIMS:

In this study, the anticonvulsant action of closed-loop, low-frequency deep brain stimulation (DBS) was investigated. In addition, the changes in brain rhythms and functional connectivity of the hippocampus and prefrontal cortex were evaluated.

METHODS:

Epilepsy was induced by pilocarpine in male Wistar rats. After the chronic phase, a tripolar electrode was implanted in the right ventral hippocampus and a monopolar electrode in medial prefrontal cortex (mPFC). Subjects' spontaneous seizure behaviors were observed in continuous video recording, while the local field potentials (LFPs) were recorded simultaneously. In addition, spatial memory was evaluated by the Barnes maze test.

RESULTS:

Applying hippocampal DBS, immediately after seizure detection in epileptic animals, reduced their seizure severity and duration, and improved their performance in Barnes maze test. DBS reduced the increment in power of delta, theta, and gamma waves in pre-ictal, ictal, and post-ictal periods. Meanwhile, DBS increased the post-ictal-to-pre-ictal ratio of theta band. DBS decreased delta and increased theta coherences, and also increased the post-ictal-to-pre-ictal ratio of coherence. In addition, DBS increased the hippocampal-mPFC coupling in pre-ictal period and decreased the coupling in the ictal and post-ictal periods.

CONCLUSION:

Applying closed-loop, low-frequency DBS at seizure onset reduced seizure severity and improved memory. In addition, the changes in power, coherence, and coupling of the LFP oscillations in the hippocampus and mPFC demonstrate low-frequency DBS efficacy as an antiepileptic treatment, returning LFPs to a seemingly non-seizure state in subjects that received DBS.
Subject(s)
Key words

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Pilocarpine / Epilepsy Limits: Animals / Humans / Male Language: En Journal: CNS Neurosci Ther Journal subject: NEUROLOGIA / TERAPEUTICA Year: 2024 Document type: Article Affiliation country: Irán

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Pilocarpine / Epilepsy Limits: Animals / Humans / Male Language: En Journal: CNS Neurosci Ther Journal subject: NEUROLOGIA / TERAPEUTICA Year: 2024 Document type: Article Affiliation country: Irán