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Cardiac and Vascular Sympathetic Baroreflex Control during Orthostatic Pre-Syncope

We hypothesized that sympathetic baroreflex mediated uncoupling between neural sympathetic discharge pattern and arterial pressure (AP) fluctuations at 0.1 Hz during baroreceptor unloading might promote orthostatic pre-syncope. Ten volunteers (32 ± 6 years) underwent electrocardiogram, beat-to-beat...

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Autores principales: Furlan, Raffaello, Heusser, Karsten, Minonzio, Maura, Shiffer, Dana, Cairo, Beatrice, Tank, Jens, Jordan, Jens, Diedrich, André, Gauger, Peter, Zamuner, Antonio Roberto, Dipaola, Franca, Porta, Alberto, Barbic, Franca
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
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Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6781174/
https://www.ncbi.nlm.nih.gov/pubmed/31510103
http://dx.doi.org/10.3390/jcm8091434
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author Furlan, Raffaello
Heusser, Karsten
Minonzio, Maura
Shiffer, Dana
Cairo, Beatrice
Tank, Jens
Jordan, Jens
Diedrich, André
Gauger, Peter
Zamuner, Antonio Roberto
Dipaola, Franca
Porta, Alberto
Barbic, Franca
author_facet Furlan, Raffaello
Heusser, Karsten
Minonzio, Maura
Shiffer, Dana
Cairo, Beatrice
Tank, Jens
Jordan, Jens
Diedrich, André
Gauger, Peter
Zamuner, Antonio Roberto
Dipaola, Franca
Porta, Alberto
Barbic, Franca
author_sort Furlan, Raffaello
collection PubMed
description We hypothesized that sympathetic baroreflex mediated uncoupling between neural sympathetic discharge pattern and arterial pressure (AP) fluctuations at 0.1 Hz during baroreceptor unloading might promote orthostatic pre-syncope. Ten volunteers (32 ± 6 years) underwent electrocardiogram, beat-to-beat AP, respiratory activity and muscle sympathetic nerve activity (MSNA) recordings while supine (REST) and during 80° head-up tilt (HUT) followed by −10 mmHg stepwise increase of lower body negative pressure until pre-syncope. Cardiac and sympathetic baroreflex sensitivity were quantified. Spectrum analysis of systolic and diastolic AP (SAP and DAP) and calibrated MSNA (cMSNA) variability assessed the low frequency fluctuations (LF, ~0.1 Hz) of SAP, DAP and cMSNA variability. The squared coherence function (K(2)) quantified the coupling between cMSNA and DAP in the LF band. Analyses were performed while supine, during asymptomatic HUT (T(1)) and at pre-syncope onset (T(2)). During T(2) we found that: (1) sympathetic baroreceptor modulation was virtually abolished compared to T(1); (2) a progressive decrease in AP was accompanied by a persistent but chaotic sympathetic firing; (3) coupling between cMSNA and AP series at 0.1 Hz was reduced compared to T(1). A negligible sympathetic baroreceptor modulation during pre-syncope might disrupt sympathetic discharge pattern impairing the capability of vessels to constrict and promote pre-syncope.
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spelling pubmed-67811742019-10-30 Cardiac and Vascular Sympathetic Baroreflex Control during Orthostatic Pre-Syncope Furlan, Raffaello Heusser, Karsten Minonzio, Maura Shiffer, Dana Cairo, Beatrice Tank, Jens Jordan, Jens Diedrich, André Gauger, Peter Zamuner, Antonio Roberto Dipaola, Franca Porta, Alberto Barbic, Franca J Clin Med Article We hypothesized that sympathetic baroreflex mediated uncoupling between neural sympathetic discharge pattern and arterial pressure (AP) fluctuations at 0.1 Hz during baroreceptor unloading might promote orthostatic pre-syncope. Ten volunteers (32 ± 6 years) underwent electrocardiogram, beat-to-beat AP, respiratory activity and muscle sympathetic nerve activity (MSNA) recordings while supine (REST) and during 80° head-up tilt (HUT) followed by −10 mmHg stepwise increase of lower body negative pressure until pre-syncope. Cardiac and sympathetic baroreflex sensitivity were quantified. Spectrum analysis of systolic and diastolic AP (SAP and DAP) and calibrated MSNA (cMSNA) variability assessed the low frequency fluctuations (LF, ~0.1 Hz) of SAP, DAP and cMSNA variability. The squared coherence function (K(2)) quantified the coupling between cMSNA and DAP in the LF band. Analyses were performed while supine, during asymptomatic HUT (T(1)) and at pre-syncope onset (T(2)). During T(2) we found that: (1) sympathetic baroreceptor modulation was virtually abolished compared to T(1); (2) a progressive decrease in AP was accompanied by a persistent but chaotic sympathetic firing; (3) coupling between cMSNA and AP series at 0.1 Hz was reduced compared to T(1). A negligible sympathetic baroreceptor modulation during pre-syncope might disrupt sympathetic discharge pattern impairing the capability of vessels to constrict and promote pre-syncope. MDPI 2019-09-10 /pmc/articles/PMC6781174/ /pubmed/31510103 http://dx.doi.org/10.3390/jcm8091434 Text en © 2019 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Furlan, Raffaello
Heusser, Karsten
Minonzio, Maura
Shiffer, Dana
Cairo, Beatrice
Tank, Jens
Jordan, Jens
Diedrich, André
Gauger, Peter
Zamuner, Antonio Roberto
Dipaola, Franca
Porta, Alberto
Barbic, Franca
Cardiac and Vascular Sympathetic Baroreflex Control during Orthostatic Pre-Syncope
title Cardiac and Vascular Sympathetic Baroreflex Control during Orthostatic Pre-Syncope
title_full Cardiac and Vascular Sympathetic Baroreflex Control during Orthostatic Pre-Syncope
title_fullStr Cardiac and Vascular Sympathetic Baroreflex Control during Orthostatic Pre-Syncope
title_full_unstemmed Cardiac and Vascular Sympathetic Baroreflex Control during Orthostatic Pre-Syncope
title_short Cardiac and Vascular Sympathetic Baroreflex Control during Orthostatic Pre-Syncope
title_sort cardiac and vascular sympathetic baroreflex control during orthostatic pre-syncope
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6781174/
https://www.ncbi.nlm.nih.gov/pubmed/31510103
http://dx.doi.org/10.3390/jcm8091434
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