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Study identifier: NCT07205003 Synced from ClinicalTrials.gov · July 28, 2026
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Evaluation of the Link Between Carotid Arterial Wall Viscosity and Major Neurocognitive Disorders

Condition: Neurocognitive Disorders · Alzheimer's Disease  ·  Sponsor: University Hospital, Rouen

PhaseN/A
Planned participants140
Who can joinAll sexes, 70 Years to no upper limit
Healthy volunteersNo

About this study

The mechanical behavior of conductance arteries is viscoelastic. While the elastic component has been extensively studied, the viscous component has often been neglected for methodological reasons and also because it was considered weak. Unlike a purely elastic solid, which exhibits instantaneous deformation/relaxation upon application/discontinuation of a force, a viscoelastic solid is characterized, from a mechanical point of view, by a delay between the application or discontinuation of the force and deformation. Thus, at the arterial level, the elasticity of the arterial wall allows the internal diameter to increase proportionally to the blood pressure during systole. The viscous component will induce a delay in diameter restoration, resulting in a larger diameter at each pressure level during the diastolic phase compared to the systolic phase. This results in a shift between the systolic and diastolic curves of the pressure-diameter relationship, creating a hysteresis loop. From a thermodynamic point of view, while a purely elastic material fully restores the energy stored during the loading phase, viscoelastic arteries will incompletely restore this energy. Thus, the surface of the hysteresis loop reflects the energy dissipated during each cardiac cycle (WV), and the area under the loading phase curve represents the energy stored by the arterial wall (WE) during the latter. Thus, arterial wall viscosity (APV) can be expressed either as the absolute value of WV or as a …

This description comes directly from the study's public registry record.

Talk to the study team

Frédéric FR ROCA, Doctor  ·  02 32 88 05 39  ·  Frederic.Roca@chu-rouen.fr

Philippe PC CHASSAGNE, Professor  ·  02 32 88 05 39  ·  Philippe.Chassagne@chu-rouen.fr

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Locations (1)

University Rouen HospitalRouen, FranceRecruiting

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Source record: clinicaltrials.gov/study/NCT07205003