Vascular adaptation to 4 wk of deconditioning by unilateral lower limb suspension
Сосудистая адаптация к 4-недельному детренированию при односторонней подвеске нижней конечности
2004-12-02
SCID: 54.1/rs38dufm
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calf blood flowfemoral artery diameterflow-mediated dilationunilateral lower limb suspensionvascular deconditioning
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Abstract (AI)
Physical inactivity or deconditioning is an independent risk factor for atherosclerosis and cardiovascular disease. In contrast to exercise, the vascular changes that occur as a result of deconditioning have not been characterized. We used 4 wk of unilateral lower limb suspension (ULLS) to study arterial and venous adaptations to deconditioning. In contrast to previous studies, this model is not confounded by denervation or microgravity. Seven healthy subjects participated in the study. Arterial and venous characteristics of the legs were assessed by echo Doppler ultrasound and venous occlusion plethysmography. The diameter of the common and superficial femoral artery decreased by 12% after 4 wk of ULLS. Baseline calf blood flow, as measured by plethysmography, decreased from 2.1 +/- 0.2 to 1.6 +/- 0.2 ml.min(-1).dl tissue(-1). Both arterial diameter and calf blood flow returned to baseline values after 4 wk of recovery. There was no indication of a decrease in flow-mediated dilation of the superficial femoral artery after ULLS deconditioning. This means that functional adaptations to inactivity are not simply the inverse of adaptations to exercise. The venous pressure-volume curve is shifted downward after ULLS, without any effect on compliance. In conclusion, deconditioning by 4 wk of ULLS causes significant changes in both the arterial and the venous system.
Key Findings
1
Arterial diameter and calf blood flow returned to baseline after four weeks of recovery.
2
Baseline calf blood flow decreased from 2.1 ± 0.2 to 1.6 ± 0.2 ml·min⁻¹·dl tissue⁻¹ after deconditioning.
3
Deconditioning shifted the venous pressure-volume curve downward without altering venous compliance, demonstrating adaptations in both arterial and venous systems.
4
Four weeks of unilateral lower limb suspension caused a 12% decrease in common and superficial femoral artery diameter.
5
Unilateral lower limb suspension did not reduce flow-mediated dilation of the superficial femoral artery, indicating deconditioning is not simply the inverse of exercise adaptation.
Research Object
Arterial and venous systems of the lower limbs subjected to 4 wk of unilateral lower limb suspension deconditioning
Research Subject
Vascular adaptations to deconditioning, including changes in arterial diameter, calf blood flow, flow-mediated dilation, venous pressure–volume relationship, and compliance, together with recovery after reloading
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2004-12-02
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