Phantom model for intracranial pressure

Fuente: arXiv
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Autori principali: Batonon, Célia, Monnier, Heimiri, Gauberville, Arnaud, Connesson, Léna
Natura: Preprint
Pubblicazione: 2026
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author Batonon, Célia
Monnier, Heimiri
Gauberville, Arnaud
Connesson, Léna
author_facet Batonon, Célia
Monnier, Heimiri
Gauberville, Arnaud
Connesson, Léna
contents This report presents the MOD{È}FONE project, whose objective is to develop a simplified experimental model of the cerebrospinal system in order to investigate fluid-structure interactions and physiological adaptations under altered gravity conditions, with a particular focus on microgravity. The experimental setup is based on a pulsatile hydraulic circuit reproducing systolic and diastolic dynamics, coupled with deformable elements simulating vascular compliance and a cranial compartment immersed in a fluid representing cerebrospinal fluid. This model enables the analysis of cranial and spinal pressures as well as their pulsatility. The purpose of this report is to describe the design and the results of the experimental setup.
format Preprint
id arxiv_https___arxiv_org_abs_2601_15357
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Phantom model for intracranial pressure
Batonon, Célia
Monnier, Heimiri
Gauberville, Arnaud
Connesson, Léna
Medical Physics
This report presents the MOD{È}FONE project, whose objective is to develop a simplified experimental model of the cerebrospinal system in order to investigate fluid-structure interactions and physiological adaptations under altered gravity conditions, with a particular focus on microgravity. The experimental setup is based on a pulsatile hydraulic circuit reproducing systolic and diastolic dynamics, coupled with deformable elements simulating vascular compliance and a cranial compartment immersed in a fluid representing cerebrospinal fluid. This model enables the analysis of cranial and spinal pressures as well as their pulsatility. The purpose of this report is to describe the design and the results of the experimental setup.
title Phantom model for intracranial pressure
topic Medical Physics
url https://arxiv.org/abs/2601.15357