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関連する概念動画

Epilepsy and Seizures: Overview01:24

Epilepsy and Seizures: Overview

277
Epilepsy is a chronic neurological disease marked by recurrent, unpredictable seizures. These seizures are caused by abnormal electrical discharges in the brain, leading to behavior, sensation, or consciousness alterations. They can also cause transient impairment of awareness, interfering with daily activities.
Various factors can trigger epilepsy, including genetic factors, brain damage, metabolic causes, and unknown etiology. Diagnosis of epilepsy involves electroencephalography (EEG), which...
277
Antiepileptic Drugs: Modulators of Neurotransmitter Release Mediated by SV2A Protein01:20

Antiepileptic Drugs: Modulators of Neurotransmitter Release Mediated by SV2A Protein

446
Antiepileptic drugs, such as levetiracetam (Keppra) and brivaracetam (Briviact), have emerged as crucial tools in managing epilepsy. These medications exert their therapeutic effects by targeting the synaptic vesicle protein SV2A, a transmembrane glycoprotein primarily found in the brain.
SV2A is a transmembrane glycoprotein located predominantly in the brain, modulating the release of neurotransmitters for neuronal communication. Both levetiracetam and brivaracetam exhibit a high affinity for...
446
Antiepileptic Drugs: Glutamate Antagonists01:14

Antiepileptic Drugs: Glutamate Antagonists

512
Glutamate is a fundamental neurotransmitter in the central nervous system, playing a vital role in neuronal communication and various cognitive processes. Glutamate stands as the principal excitatory neurotransmitter in the brain. Its presence is crucial for the communication between neurons, underpinning essential processes such as synaptic transmission, neuronal excitability, and plasticity. These functions are vital for higher-order cognitive processes, including learning and memory. The...
512
Antiepileptic Drugs: GABAergic Pathway Potentiators01:18

Antiepileptic Drugs: GABAergic Pathway Potentiators

640
γ-aminobutyric acid or GABA, plays a pivotal role as an inhibitory neurotransmitter in the brain. GABA pathway potentiators, also known as GABAergic drugs, are a class of pharmaceutical agents designed to enhance the functioning of the GABAergic system. These medications primarily treat epilepsy, a neurological disorder characterized by recurrent seizures.
The key GABA pathway potentiators used in epilepsy management are as follows.
Benzodiazepines are a well-known class of drugs used for...
640
Antiepileptic Drugs: Potassium Channel Activators01:20

Antiepileptic Drugs: Potassium Channel Activators

274
Ezocgabine or retigabine, an antiepileptic drug of remarkable efficacy, has revolutionized the management of seizures. It is a potassium channel activator, explicitly targeting the family of Q subtype potassium channels. It enhances the transmembrane potassium currents, regulating neuronal excitability. This action stabilizes the resting membrane potential, a pivotal factor in mitigating the hyperexcitability that characterizes epilepsy.
Ezogabine has gained approval as an adjunctive treatment...
274

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[Morphometric analysis program combined with magnetoencephalogram in the localization of epileptogenic foci in MRI-negative pharmacoresistant focal epilepsy patients].

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関連する実験動画

Updated: Sep 10, 2025

Author Spotlight: Unraveling Neural Communication and Circuit Interactions in Health and Disease
06:55

Author Spotlight: Unraveling Neural Communication and Circuit Interactions in Health and Disease

Published on: November 21, 2024

881

[脳ネットワークベースの神経調節治療:現在の状況と展望]

Z S Li1, Y C Lin2, Y P Wang1

  • 1Department of Neurology, Xuanwu Hospital, Capital Medical University, Beijing 100053, China.

Zhonghua yi xue za zhi
|August 24, 2025
PubMed
まとめ

は脳のネットワーク障害です このレビューでは,薬剤耐性性に対する神経調節戦略を調査し,個別化された治療のための発作制御よりもネットワークの再構築を提唱しています.

科学分野:

  • 神経学
  • 神経科学
  • 生物医学工学

背景:

  • は数百万人に影響し,約30%が薬剤耐性 (DRE) を経験しています.
  • エピレプシは脳のネットワークの障害としてますます理解されています.
  • 神経画像とネットワーク理論の進歩により 新しい神経調節方法が可能になりました

研究 の 目的:

  • エピレプシーネットワークの調節における最近の進展を体系的に検討する.
  • エピレプシーのネットワークハブの正確な識別と調節に焦点を当てます.
  • 一般的なと現在の課題に関する戦略を探求する.

主な方法:

  • 現在の科学文献の体系的なレビュー
  • 神経画像技術と脳ネットワーク理論の分析
  • 既存のおよび新興の神経調節戦略の批判的評価

主要な成果:

  • 焦点性のエピレプシスネットワークハブの特定と調節における進歩
  • 一般的なに対する脳ネットワークの調節戦略の開発.
  • この分野における主要な課題と将来の方向性を特定する.

さらに関連する動画

A Multimodal Imaging- and Stimulation-based Method of Evaluating Connectivity-related Brain Excitability in Patients with Epilepsy
08:23

A Multimodal Imaging- and Stimulation-based Method of Evaluating Connectivity-related Brain Excitability in Patients with Epilepsy

Published on: November 13, 2016

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Electrophoretic Delivery of γ-aminobutyric Acid GABA into Epileptic Focus Prevents Seizures in Mice
07:01

Electrophoretic Delivery of γ-aminobutyric Acid GABA into Epileptic Focus Prevents Seizures in Mice

Published on: May 16, 2019

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関連する実験動画

Last Updated: Sep 10, 2025

Author Spotlight: Unraveling Neural Communication and Circuit Interactions in Health and Disease
06:55

Author Spotlight: Unraveling Neural Communication and Circuit Interactions in Health and Disease

Published on: November 21, 2024

881
A Multimodal Imaging- and Stimulation-based Method of Evaluating Connectivity-related Brain Excitability in Patients with Epilepsy
08:23

A Multimodal Imaging- and Stimulation-based Method of Evaluating Connectivity-related Brain Excitability in Patients with Epilepsy

Published on: November 13, 2016

11.3K
Electrophoretic Delivery of γ-aminobutyric Acid GABA into Epileptic Focus Prevents Seizures in Mice
07:01

Electrophoretic Delivery of γ-aminobutyric Acid GABA into Epileptic Focus Prevents Seizures in Mice

Published on: May 16, 2019

9.2K

結論:

  • 神経調節は 薬剤耐性の治療に 有望な可能性を秘めています
  • パラダイムシフトは"ネットワークのリモデリング-機能的な復元"を提唱しています.
  • このアプローチにより,より正確でパーソナライズされた神経調節戦略が epilepsy 患者にとって容易になります.