Reactive hyperemia is the key stimulus generated when the cuff is released after temporarily restricting forearm circulation. The resulting rise in blood flow increases wall shear stress, the frictional force acting along the vessel lining. This mechanical signal activates the endothelium, linking restoration of flow to the vascular response measured during FMD testing.
Nitric oxide released by the endothelium relaxes vascular smooth muscle, allowing the artery to enlarge after flow returns. This step matters because the measured diameter change reflects communication between the vessel wall and the underlying smooth muscle, rather than blood-flow restoration alone. Reduced or altered dilatation can therefore provide evidence of endothelial dysfunction.
The percentage is calculated from the artery’s diameter before and after blood-flow restoration, with the result expressed as the increase relative to the starting measurement. It provides a standardized way to describe the vascular response rather than relying only on an absolute diameter change. This format supports comparisons of vascular health within cardiovascular research.
An assessment requires ultrasound measurement of the brachial artery, a temporary blood-pressure cuff placed to restrict forearm circulation, and a second diameter measurement after cuff release. The sequence is important: the initial reading establishes the artery’s baseline, while the post-release reading captures expansion during reactive hyperemia. Together, these measurements produce the FMD value.
In medicine, FMD provides a noninvasive way to evaluate vascular health without directly sampling the vessel. Cardiovascular researchers can use it to study endothelial dysfunction and examine whether disease, lifestyle, or treatment is associated with changes in vascular responsiveness. Because the outcome is a measured percentage increase in artery diameter, the method can track changes across these contexts.
An altered FMD result indicates a change in the artery’s ability to expand after flow is restored, making it relevant to endothelial function rather than simply vessel size. In medical research, this distinction helps investigators examine vascular dysfunction and assess whether treatment or another condition is associated with improved or impaired vascular responsiveness over time.