Literature DB >> 7570727

Simultaneous cerebrovascular and cardiovascular responses during presyncope.

R L Bondar1, M S Kassam, F Stein, P T Dunphy, S Fortney, M L Riedesel.   

Abstract

BACKGROUND AND
PURPOSE: Presyncope, characterized by symptoms and signs indicative of imminent syncope, can be aborted in many situations before loss of consciousness occurs. The plasticity of cerebral autoregulation in healthy humans and its behavior during this syncopal prodrome are unclear, although systemic hemodynamic instability has been suggested as a key factor in the precipitation of syncope. Using lower body negative pressure (LBNP) to simulate central hypovolemia, we previously observed falling mean flow velocities (MFVs) with maintained mean arterial blood pressure (MABP). These findings, and recent reports suggesting increased vascular tone within the cerebral vasculature at presyncope, cannot be explained by the classic static cerebral autoregulation curve; neither can they be totally explained by a recent suggestion of a rightward shift in this curve.
METHODS: Four male and five female healthy volunteers were exposed to presyncopal LBNP to evaluate their cerebrovascular and cardiovascular responses by use of continuous acquisition of MFV from the right middle cerebral artery with transcranial Doppler sonography, MABP (Finapres), and heart rate (ECG).
RESULTS: At presyncope, MFV dropped on average by 27.3 +/- 14% of its baseline value (P < .05), while MABP remained at 2.0 +/- 27% above its baseline level. Estimated cerebrovascular resistance increased during LBNP. The percentage change from baseline to presyncope in MFV and MABP revealed consistent decreases in MFV before MABP.
CONCLUSIONS: Increased estimated cerebrovascular resistance, falling MFV, and constant MABP are evidence of an increase in cerebral vascular tone with falling flow, suggesting a downward shift in the cerebral autoregulation curve. Cerebral vessels may have a differential sensitivity to sympathetic drive or more than one type of sympathetic innervation. Future work to induce dynamic changes in MABP during LBNP may help in assessing the plasticity of the cerebral autoregulation mechanism.

Entities:  

Keywords:  NASA Center JSC; NASA Discipline Cardiopulmonary; Non-NASA Center

Mesh:

Year:  1995        PMID: 7570727     DOI: 10.1161/01.str.26.10.1794

Source DB:  PubMed          Journal:  Stroke        ISSN: 0039-2499            Impact factor:   7.914


  16 in total

1.  Cerebral autoregulation in neurally mediated syncope: victim or executioner?

Authors:  A F Folino
Journal:  Heart       Date:  2005-11-03       Impact factor: 5.994

Review 2.  Transcranial Doppler for evaluation of cerebral autoregulation.

Authors:  Ronney B Panerai
Journal:  Clin Auton Res       Date:  2009-04-16       Impact factor: 4.435

3.  Chronic physical activity mitigates cerebral hypoperfusion during central hypovolemia in elderly humans.

Authors:  Kevin Formes; Peizhen Zhang; Nancy Tierney; Frederick Schaller; Xiangrong Shi
Journal:  Am J Physiol Heart Circ Physiol       Date:  2009-12-31       Impact factor: 4.733

4.  Effects of heat stress on dynamic cerebral autoregulation during large fluctuations in arterial blood pressure.

Authors:  R Matthew Brothers; Rong Zhang; Jonathan E Wingo; Kimberly A Hubing; Craig G Crandall
Journal:  J Appl Physiol (1985)       Date:  2009-10-01

Review 5.  Typical vasovagal syncope as a "defense mechanism" for the heart by contrasting sympathetic overactivity.

Authors:  Paolo Alboni; Marco Alboni
Journal:  Clin Auton Res       Date:  2017-07-01       Impact factor: 4.435

6.  Cerebral blood flow during vasovagal syncope induced by active standing or head up tilt.

Authors:  R Y Sung; Z D Du; C W Yu; M C Yam; T F Fok
Journal:  Arch Dis Child       Date:  2000-02       Impact factor: 3.791

Review 7.  Autonomic function and brain volume.

Authors:  Juan M Racosta; Kurt Kimpinski
Journal:  Clin Auton Res       Date:  2016-08-27       Impact factor: 4.435

Review 8.  Brain ischemia in patients with intracranial hemorrhage: pathophysiological reasoning for aggressive diagnostic management.

Authors:  Daniel Naranjo; Michal Arkuszewski; Wojciech Rudzinski; Elias R Melhem; Jaroslaw Krejza
Journal:  Neuroradiol J       Date:  2013-12-18

9.  [Prediction of syncope with nonlinear dynamic analysis during head-up tilt in vasovagal syncope patients].

Authors:  F Li; H B Wang; Q Peng; Y C Sun; R Zhang; B Pang; J Fang; J Zhang; Y N Huang
Journal:  Beijing Da Xue Xue Bao Yi Xue Ban       Date:  2019-06-18

10.  Human cerebral autoregulation before, during and after spaceflight.

Authors:  Ken-ichi Iwasaki; Benjamin D Levine; Rong Zhang; Julie H Zuckerman; James A Pawelczyk; André Diedrich; Andrew C Ertl; James F Cox; William H Cooke; Cole A Giller; Chester A Ray; Lynda D Lane; Jay C Buckey; Friedhelm J Baisch; Dwain L Eckberg; David Robertson; Italo Biaggioni; C Gunnar Blomqvist
Journal:  J Physiol       Date:  2006-12-21       Impact factor: 5.182

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