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Anatomy

Epilepsy · Hyperexcitable networks, seizures and modern treatment options.

Reviewed 2026-08·Sources & research·Methodology·Media credits

At a glance
Score intensity

Darker cells mean a higher score for this topic on that metric.

Last reviewed Sources & creditsMedia creditsMethodology

Quick answers

Where should I start with Epilepsy?

Read Overview → Anatomy → Function, then use compare rails.

Is this page advice for Epilepsy?

Educational atlas — not a diagnosis, treatment plan, or medical advice.

What does the local lens add?

It names everyday desks for Disorders before English norms look universal.

Are the scores a ranking of Epilepsy?

No — editorial 0–100 browsing aids inside this atlas only.

How do I compare Epilepsy to neighbours?

Use related cards and best-of / quiz rails after the first three chapters.

Which chapter is densest?

Anatomy and Function carry mechanisms; skim Overview first.

Start with this section - Anatomy

Epilepsy
EpilepsyUnknown author · CC BY-SA 2.0 · Wikimedia Commons

Anatomy for Epilepsy is a network story, not a single “spot”.

Structures below are teaching landmarks; individual brains vary.

Structures

Structure 1

A key node for network hyperexcitability in Epilepsy, studied with imaging and lesion methods.

Structure 2

A key node for network hyperexcitability in Epilepsy, studied with imaging and lesion methods.

Structure 3

A key node for network hyperexcitability in Epilepsy, studied with imaging and lesion methods.

Structure 4

A key node for network hyperexcitability in Epilepsy, studied with imaging and lesion methods.

Structure 5

A key node for network hyperexcitability in Epilepsy, studied with imaging and lesion methods.

Structure 6

A key node for network hyperexcitability in Epilepsy, studied with imaging and lesion methods.

Pathways

Pathway 1

White-matter and synaptic routes that carry network hyperexcitability signals.

Pathway 2

White-matter and synaptic routes that carry network hyperexcitability signals.

Pathway 3

White-matter and synaptic routes that carry network hyperexcitability signals.

Pathway 4

White-matter and synaptic routes that carry network hyperexcitability signals.

Landmarks

Landmark 1

A classic anatomical landmark used when teaching Epilepsy.

Landmark 2

A classic anatomical landmark used when teaching Epilepsy.

Landmark 3

A classic anatomical landmark used when teaching Epilepsy.

Landmark 4

A classic anatomical landmark used when teaching Epilepsy.

Trace related regions on the interactive atlas after reading this page.

Sources & research

  1. ILAE official report: a practical clinical definition of epilepsyFisher RS; et al. · 2014 · EpilepsiaDOIPubMed
  2. EpilepsyThijs RD; et al. · 2019 · The LancetDOIPubMed
  3. Mechanisms of epileptogenesisPitkänen A; Lukasiuk K · 2011 · Lancet NeurologyDOI

Media credits

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