Structure 1
A key node for network hyperexcitability in Epilepsy, studied with imaging and lesion methods.
Anatomy for Epilepsy is a network story, not a single “spot”.
Structures below are teaching landmarks; individual brains vary.
A key node for network hyperexcitability in Epilepsy, studied with imaging and lesion methods.
A key node for network hyperexcitability in Epilepsy, studied with imaging and lesion methods.
A key node for network hyperexcitability in Epilepsy, studied with imaging and lesion methods.
A key node for network hyperexcitability in Epilepsy, studied with imaging and lesion methods.
A key node for network hyperexcitability in Epilepsy, studied with imaging and lesion methods.
A key node for network hyperexcitability in Epilepsy, studied with imaging and lesion methods.
White-matter and synaptic routes that carry network hyperexcitability signals.
White-matter and synaptic routes that carry network hyperexcitability signals.
White-matter and synaptic routes that carry network hyperexcitability signals.
White-matter and synaptic routes that carry network hyperexcitability signals.
A classic anatomical landmark used when teaching Epilepsy.
A classic anatomical landmark used when teaching Epilepsy.
A classic anatomical landmark used when teaching Epilepsy.
A classic anatomical landmark used when teaching Epilepsy.
Trace related regions on the interactive atlas after reading this page.
Progressive dementia driven by protein pathology and network failure.
Research 74 🤲Dopamine circuit loss, movement symptoms and non-motor features.
Research 54 ⚡Sudden vascular injury — time, territory and the race to recover.
Research 64 🌧️Mood circuits, stress biology and evidence-based interventions.
Research 66 🌀Perception, belief and cognition when predictive models go awry.
Research 93 💢Sensory gain, aura and the brain’s recurrent pain networks.
Research 74 📱Attention control, impulsivity and developmental self-regulation.
Research 51