Key result
Standing is linked to higher PWV and ~70 mm Hg greater foot blood pressure.
Why the study?
Do postural changes affect arterial pressures, timing of arterial sounds, and pulse wave velocities in normal subjects?
Observational
Do postural changes affect arterial pressures, timing of arterial sounds, and pulse wave velocities in normal subjects?
Postural changes significantly alter arterial pressures and pulse wave velocities in the extremities, with standing markedly increasing foot blood pressure and pulse wave velocity.
Postural changes alter apparent PWV and foot BP; leaves open need for standardized protocols in clinical vascular assessment.
We have recorded systolic and diastolic blood pressure, and the intervals between the QRS complex of the electrocardiogram and the Korotkoff arterial sound at systolic and diastolic pressure (QKs and QKd, respectively), at the brachial and posterior malleolar arteries, for normal subjects in the supine, standing, or head-down positions on a tilt table. These data make it possible to calculate an apparent mean pulse wave velocity. Results indicate: (1) when the subject is supine (0 degrees), brachial and posterior malleolar artery blood pressures are virtually identical; (2) upon standing (+90 degrees), both systolic and diastolic pressures in the foot are elevated by a mean of approximately 70 mm Hg, whereas brachial artery systolic pressure is unaffected and brachial diastolic pressure is raised 7 mm of mercury; (3) conversely, in the head-down (feet-up) position (-30 degrees) the blood pressure in the foot was decreased approximately 20 mm of mercury, whereas the brachial arterial pressure is again unaffected; (4) as one changes from the head-down to the supine to the standing positions, the mean QKs interval at the brachial artery was increased by 5 and 15 msec, respectively; (5) conversely, the arrival of the pulse wave in the leg was hastened, with QKd decreasing by 7 and then 18 msec. The effects of QKs were slightly smaller in the brachial artery but considerably larger in the malleolar artery, with a decrease of 16 msec and then 48 msec; (6) mean apparent pulse wave velocity increases from 9.1 to 10.9 to 17.6 m/sec, as one changes from -30 degrees to 0 degrees to +90 degrees.
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Hasegawa et al. (2008) conducted an observational in Normal subjects. Posture changes (supine, standing, head-down) vs. Supine position (0 degrees) was evaluated on Arterial pressures, QKs/QKd intervals, and pulse wave velocity. Changing posture from head-down to supine to standing increased mean apparent pulse wave velocity from 9.1 to 10.9 to 17.6 m/sec and elevated foot blood pressures by approximately 70 mm Hg.
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