EventsThe 3rd International Electronic Conference on Brain Sciences
Published
This submission belongs to the session 7. Computational Neuroscience and Neuroinformatics of the event The 3rd International Electronic Conference on Brain Sciences
Published date
10 Oct, 2022
Academic Editor
author-avatarStephen Meriney
Citation
Yoritaka Iwata, Hiroshi Ujiie, Resonance condition leading to the dumbbell-shaped aneurismal rupture, in Proceedings of The 3rd International Electronic Conference on Brain Sciences, 1 October–15 October 2022, MDPI: Basel, Switzerland, doi: 10.3390/IECBS2022-13023
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Resonance condition leading to the dumbbell-shaped aneurismal rupture

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1. Kansai \University, Japan
2. Neurosurgery, Kamagaya General Hospital, Japan
3. Institute of Ujiie Neurosurgical and Medical Clinic, Japan
Abstract

The Solitonic Windkessel model [1], which is successful for explaining the intracranial aneurysmal rupture based on the Windkessel-type hemodynamic circulation modeling, is employed for explaining intracranial aneurysmal rupture, as well as several kinds of hemorrhage. In this paper, much attention is paid to the appearance of resonance, and the hemorrhage is shown to arise from the resonance.

[1] H. Ujiie, Y. Iwata, Solitonic Windkessel model for intracranial aneurism, Brain Sciences, in press, 2022.

Keywords
intracranial aneurism
Windkessel model
resonance
soliton
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