Related Experiment Video
Updated: May 28, 2026

3D-Neuronavigation In Vivo Through a Patient's Brain During a Spontaneous Migraine Headache
Published on: June 2, 2014
Neurovascular changes in prolonged migraine aura in FHM with a novel ATP1A2 gene mutation
Takahiro Iizuka1, Yuji Takahashi, Mayumi Sato
1Department of Neurology, Kitasato University, School of Medicine, 1-15-1 Kitasato, Minami-ku, Sagamihara, Kanagawa 252-0374, Japan. takahiro@med.kitasato-u.ac.jp
Objectives:
To report cerebral blood flow changes during attacks of hemiplegic migraine with prolonged aura (HMPA) longer than 24 h in patients with familial hemiplegic migraine (FHM) with a novel gene mutation.
Methods:
The authors performed serial neuroimaging studies during acute stage and after recovery of aura symptoms in eight HMPA attacks in two affected individuals of the Japanese family of FHM during a 10-year-observational period. The authors also performed a mutational analysis for all exons of the CACNA1A, ATP1A2 and SCN1A genes in three individuals of this family.
Results:
Each patient had an individual 'predominantly affected hemisphere,' that is, susceptible to hemiplegia during an HMPA attack. Migraine aura lasted 4 to 12 days. Neuroimaging studies performed on days 1 to 4 showed hyperperfusion in the affected hemisphere contralateral to hemiplegia in five attacks, hypoperfusion in three, middle cerebral artery vasodilation in five and augmented vasogenic leakage with cortical oedema in one. Hyperperfusion developed more frequently than hypoperfusion in the 'predominantly affected hemisphere,' whereas only hypoperfusion developed in the 'non-predominantly affected hemisphere.' All changes were fully reversible. The authors identified a novel heterozygous p.H916L mutation in the ATP1A2 gene in all three individuals.
Conclusions:
Although the perfusion state could be different depending on the time course of migraine or the timing of scans in relation to cortical spreading depression, prolonged aura symptoms in this family were frequently associated with hyperperfusion and middle cerebral artery vasodilation. Hyperperfusion tended to occur in the 'predominantly affected hemisphere,' but the mechanism of HMPA awaits further investigations on additional cases of FHM2.
Insights
Familial hemiplegic migraine with prolonged aura (HMPA) involves cerebral blood flow changes, frequently hyperperfusion in the affected hemisphere. A novel ATP1A2 gene mutation was identified in this FHM2 family.
Area of Science:
- Neurology
- Genetics
- Neuroimaging
Background:
- Familial hemiplegic migraine (FHM) is a subtype of migraine with aura, characterized by temporary neurological deficits, including hemiplegia.
- Prolonged aura symptoms (HMPA) exceeding 24 hours are rare and their underlying pathophysiology remains unclear.
Observation:
- This study investigated cerebral blood flow (CBF) changes during prolonged aura attacks in two FHM patients with a novel gene mutation.
- Serial neuroimaging was performed during acute attacks and after recovery over a 10-year period.
- Genetic analysis identified a novel heterozygous p.H916L mutation in the ATP1A2 gene.
Findings:
- During HMPA attacks, affected hemispheres showed variable CBF changes, including hyperperfusion (more frequent) and hypoperfusion.
- Middle cerebral artery vasodilation and reversible vasogenic edema were observed.
- Hyperperfusion predominantly occurred in the hemisphere susceptible to hemiplegia, while the contralateral hemisphere showed only hypoperfusion.
Implications:
- Prolonged aura in this FHM family is associated with hyperperfusion and vasodilation, particularly in the 'predominantly affected hemisphere'.
- The findings suggest a potential link between the identified ATP1A2 mutation and the observed CBF abnormalities in HMPA.
- Further research on additional FHM2 cases is needed to elucidate the precise mechanisms of HMPA.
More Related Videos
08:04Identification and Classification of Position-specific GABAA Receptor Subunit Missense Variants for Their Role In Hippocampal Pyramidal Neurons
Published on: June 6, 2025
09:34Targeted Next-generation Sequencing and Bioinformatics Pipeline to Evaluate Genetic Determinants of Constitutional Disease
Published on: April 4, 2018
Related Concept Videos
ATP Synthase: Mechanism
Increased Intracranial Pressure ll: Pathophysiology