Literature DB >> 11788414

Hypovolemia and neurovascular control during orthostatic stress.

Derek S Kimmerly1, J Kevin Shoemaker.   

Abstract

Humans exposed to real or simulated microgravity experience decrements in blood pressure regulation during orthostatic stress that may be related to autonomic dysregulation and/or hypovolemia. We examined the hypothesis that hypovolemia, without the deconditioning effects of bed rest or spaceflight, would augment the sympathoneural and vasomotor response to graded orthostatic stress. Radial artery blood pressure (tonometry), stroke volume (SV), brachial blood flow (Doppler ultrasound), heart rate (electrocardiogram), peroneal muscle sympathetic nerve activity (MSNA; microneurography), and estimated central venous pressure (CVP) were recorded during five levels (-5, -10, -15, -20 and -40 mmHg) of randomly assigned lower body negative pressure (LBNP) (n = 8). Forearm (FVR) and total peripheral vascular resistance (TPR) were calculated. The test was repeated under randomly assigned placebo (normovolemia) or diuretic (spironolactone: 100 mg/day, 3 days) (hypovolemia) conditions. The diuretic produced an approximately 16% reduction in plasma volume. Compared with normovolemia, SV and cardiac output were reduced by approximately 12% and approximately 10% at baseline and during LBNP after the diuretic. During hypovolemia, there was an upward shift in the %DeltaMSNA/DeltaCVP, DeltaFVR/DeltaCVP, and DeltaTPR/DeltaCVP relationships during 0 to -20 mmHg LBNP. In contrast to normovolemia, blood pressure increased at -40 mmHg LBNP during hypovolemia due to larger gains in the %DeltaMSNA/DeltaCVP and DeltaTPR/DeltaCVP relationships. It was concluded that acute hypovolemia augmented the neurovascular component of blood pressure control during moderate orthostasis, effectively compensating for decrements in SV and cardiac output.

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Year:  2002        PMID: 11788414     DOI: 10.1152/ajpheart.00535.2001

Source DB:  PubMed          Journal:  Am J Physiol Heart Circ Physiol        ISSN: 0363-6135            Impact factor:   4.733


  26 in total

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2.  Simulation study of the effects of hypovolaemia on cardiovascular response to orthostatic stress.

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4.  Effects of inspiratory impedance on hemodynamic responses to a squat-stand test in human volunteers: implications for treatment of orthostatic hypotension.

Authors:  Victor A Convertino; Duane A Ratliff; Jacqueline Crissey; Donald F Doerr; Ahamed H Idris; Keith G Lurie
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5.  Cortical regions associated with autonomic cardiovascular regulation during lower body negative pressure in humans.

Authors:  Derek S Kimmerly; Deborah D O'Leary; Ravi S Menon; Joseph S Gati; J Kevin Shoemaker
Journal:  J Physiol       Date:  2005-09-08       Impact factor: 5.182

6.  Simulations of gravitational stress on normovolemic and hypovolemic men and women.

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Journal:  Aviat Space Environ Med       Date:  2014-04

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Review 9.  Fifty years of microneurography: learning the language of the peripheral sympathetic nervous system in humans.

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10.  Influences of hydration on post-exercise cardiovascular control in humans.

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Journal:  J Physiol       Date:  2003-10-15       Impact factor: 5.182

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