Large Artery Remodeling and Dynamics following Simulated Microgravity by Prolonged Head-Down Tilt Bed Rest in Humans
Ремоделирование и динамика крупных артерий у человека после моделирования микрогравитации посредством длительного постельного режима с наклоном головы вниз
2015-01-01
SCID: 54.1/5p9qtv89
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arterial remodelingcommon carotid arteryfemoral arteryhead-down tilt bed restsimulated microgravity
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Abstract (AI)
The effects of simulated microgravity on the static and dynamic properties of large arteries are still mostly unknown. The present study evaluated, using an integrated vascular approach, changes in structure and function of the common carotid and femoral arteries (CCA and CFA) after prolonged head-down tilt bed rest (HDTBR). Ten healthy men were enrolled in a 5-week HDTBR study endorsed by the Italian Space Agency (ASI). Arterial geometry, flow, stiffness, and shear rate were evaluated by ultrasound. Local carotid pulse pressure and wave reflection were studied by applanation tonometry. After five weeks of HDTBR, CFA showed a decrease in lumen diameter without significant changes in wall thickness (IMT), resulting in an inward remodeling. Local carotid pulse pressure decreased and carotid-to-brachial pressure amplification increased. The ratio of systolic-to-diastolic volumetric flow in CFA decreased, whereas in CCA it tended to increase. Indices of arterial stiffness and shear rate did not change during HDTBR, either in CCA or CFA. In summary, prolonged HDTBR has a different impact on CCA and CFA structure and flow, probably depending on the characteristics of the vascular bed perfused.
Key Findings
1
A five-week head-down tilt bed-rest protocol was used to assess structural and functional changes in common carotid and femoral arteries in ten healthy men.
2
Arterial stiffness and shear rate did not significantly change in either artery, indicating bed-rest effects differed by vascular bed.
3
Local carotid pulse pressure decreased, while carotid-to-brachial pressure amplification increased after prolonged bed rest.
4
The femoral artery underwent inward remodeling, characterized by reduced lumen diameter without significant change in intima-media thickness.
5
The systolic-to-diastolic volumetric flow ratio decreased in the femoral artery but tended to increase in the common carotid artery.
Research Object
Common carotid and femoral arteries in healthy men subjected to prolonged head-down tilt bed rest as a model of simulated microgravity
Research Subject
Arterial remodeling and static and dynamic vascular responses, including changes in geometry, flow, stiffness, shear rate, pulse pressure, wave reflection, and pressure amplification
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2015-01-01
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