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July 17, 2019AJP Regulatory Integrative and Comparative Physiology47 citations

Interindividual differences in the ischemic stimulus and other technical considerations when assessing reactive hyperemia

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RRRyan RosenberryDTDarian TrojacekSCSusie Chung

Key Result

Reactive hyperemia was higher in young versus elderly individuals, but group differences were abrogated when adjusted for the magnitude of tissue desaturation (P<0.05 for desaturation difference).

Structured PICO

Does the magnitude of tissue desaturation explain interindividual differences in reactive hyperemia between young and elderly individuals?

P
Population
23 young and elderly individuals prospectively studied to assess reactive hyperemia and tissue desaturation across varying ischemic stimuli.
I
Intervention
Reactive hyperemia assessment using a standard 5-min occlusion followed by randomly ordered 4-, 6-, and 8-min cuff occlusions
C
Comparator
Comparison between young and elderly groups
O
Outcome
Brachial artery hyperemic velocity and flow (peak velocity and 5-s average velocity) and forearm tissue desaturationsurrogate

The ischemic stimulus to vasodilate varies across individuals, and adjusting for tissue desaturation explains apparent age-related differences in reactive hyperemia.

Main Result

p-value: p=<0.05

Abstract

Reactive hyperemia is an established, noninvasive technique to assess microvascular function and a powerful predictor of all-cause and cardiovascular morbidity and mortality. Emerging evidence from our laboratory suggests a close link between reactive hyperemia and the metabolic rate of the ischemic limb and the existence of large interindividual differences contributing to markedly different stimuli to vasodilate. Here we relate forearm tissue desaturation (i.e., the ischemic stimulus to vasodilate, measured by near-infrared spectroscopy) to brachial artery hyperemic velocity and flow (measured using duplex ultrasound) across a wide range of ischemic stimuli. Twelve young and 11 elderly individuals were prospectively studied. To recapitulate conventional vascular occlusion testing, reactive hyperemia was first assessed using a standard 5-min occlusion period. Then, to evaluate the dose dependence of tissue ischemia on reactive hyperemia, we randomly performed 4-, 6-, and 8-min cuff occlusions in both groups. In all cases, peak velocity, as well as the 5-s average velocity, immediately after the cuff occlusion was significantly higher in the young than the elderly group; however, tissue desaturation was also much more pronounced in the young group ( P < 0.05), representing a greater ischemic stimulus. Remarkably, when reactive hyperemia was adjusted for the ischemic vasodilatory stimulus, group differences in reactive hyperemia were abrogated. Together, these data challenge conventional interpretations of reactive hyperemia and show that the ischemic stimulus to vasodilate varies across individuals and that the level of reactive hyperemia is often coupled to the magnitude of tissue desaturation.

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Cite This Study

Rosenberry et al. (2019) studied this question. Cuff occlusion vs. Young vs elderly individuals was evaluated on Reactive hyperemia (peak and 5-s average velocity) and tissue desaturation (p=<0.05). Reactive hyperemia was higher in young versus elderly individuals, but group differences were abrogated when adjusted for the magnitude of tissue desaturation (P<0.05 for desaturation difference).

synapsesocial.com/papers/6a1fdd1b17bd4d7ccf0496d8https://doi.org/10.1152/ajpregu.00157.2019
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