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December 1, 1986Journal of Clinical Investigation153 citationsOpen Access

Arterial hemodynamics in human hypertension.

CTChih-Tai TingKBKenneth P. BrinSLS.J Lin

Key Points

  • This research aims to characterize aortic impedance differences between normotensive and hypertensive individuals during various conditions.
  • Analyzed hemodynamic measurements in 8 normotensive and 11 hypertensive individuals during cardiac catheterization.

Structured PICO

Do aortic impedance and hemodynamic parameters differ between hypertensive and normotensive patients at rest and during physiological interventions?

P
Population
19 age-matched Chinese patients (8 normotensive, 11 hypertensive) undergoing cardiac catheterization
I
Intervention
Physiological testing including nitroprusside administration, handgrip exercise, and beta blockade (propranolol)
C
Comparator
Normotensive patients (n=8)
O
Outcome
Aortic impedance and hemodynamic parameters (resistance, characteristic impedance, total external power, peripheral reflections, first zero crossing of impedance phase angle)surrogate

Hemodynamic abnormalities in essential hypertension, such as increased resistance and reflections, are driven by increased vasomotor tone that can be reversed with vasodilatation and unmasked by beta blockade.

Abstract

Differences in aortic impedance between normotensives and hypertensives are not well characterized. We examined impedance in 8 normotensive and 11 hypertensive (mean 96.7 vs. 122.2 mmHg) age-matched, Chinese patients undergoing cardiac catheterization at rest, during nitroprusside, and handgrip exercise before and after beta blockade (propranolol). Hypertensives had higher resistance (2,295 vs. 1713 dyn-s/cm5), characteristic impedance (145.7 vs. 93.9 dyn-s/cm5), total external power (1,579 vs. 1174 mW), peripheral reflections (ratio of backward to forward wave components of 0.54 vs. 0.44), and first zero crossing of impedance phase angle (4.15 vs. 2.97 Hz). These abnormalities were eliminated with vasodilatation. Differences between groups were not further exacerbated when pressure was increased during handgrip exercise. Beta blockade further increased resistance and reflections. Thus, hemodynamic abnormalities of essential hypertension (increased resistance, reflections, and pulse wave velocity, and decreased compliance) are compatible with an increased vasomotor tone that is further unmasked during generalized beta blockade.

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Cite This Study

Ting et al. (1986) studied this question.

synapsesocial.com/papers/6a127147a4bed3c7b1671b66https://doi.org/10.1172/jci112737
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