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Effects of an Innovative Head-Up Tilt Protocol on Blood Pressure and Arterial Stiffness Changes

The objective of our study was to identify blood pressure (BP) and pulse wave velocity (PWV) changes during orthostatic loading, using a new the head-up tilt test (HUTT), which incorporates the usage of a standardized hydrostatic column height. Methods: 40 healthy subjects 20–32 years performed HUTT...

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Autores principales: Dorogovtsev, Victor N., Yankevich, Dmitry S., Goswami, Nandu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7998828/
https://www.ncbi.nlm.nih.gov/pubmed/33805654
http://dx.doi.org/10.3390/jcm10061198
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author Dorogovtsev, Victor N.
Yankevich, Dmitry S.
Goswami, Nandu
author_facet Dorogovtsev, Victor N.
Yankevich, Dmitry S.
Goswami, Nandu
author_sort Dorogovtsev, Victor N.
collection PubMed
description The objective of our study was to identify blood pressure (BP) and pulse wave velocity (PWV) changes during orthostatic loading, using a new the head-up tilt test (HUTT), which incorporates the usage of a standardized hydrostatic column height. Methods: 40 healthy subjects 20–32 years performed HUTT, which was standardized to a height of the hydrostatic column at 133 cm. Exposure time was 10 min in each of 3 positions: horizontal supine 1, HUTT, and horizontal supine 2. The individual tilt up angle made it possible to set the standard value of the hydrostatic column. Hemodynamic parameters were recorded beat to beat using “Task Force Monitor 3040 i”, pulse-wave velocity (PWV) was measured with a sphygmograph–sphygmomanometer VaSera VS1500N. Results: Orthostatic loading caused a significant increase in heart rate (HR) and a decrease in stroke volume (SV) (p < 0.05) but no significant reductions in cardiac output, changes in total vascular resistance (TVR), or BP. An analysis of personalized data on systolic blood pressure (SBP) changes in tilt up position as compared to horizontal position (ΔSBP) revealed non-significant changes in this index in 48% of subjects (orthostatic normotension group), in 32% there was a significant decrease in it (orthostatic hypotension group) and in 20% there was a significant increase in it (orthostatic hypertension group). These orthostatic changes were not accompanied by any clinical symptoms and/or syncope. During HUTT, all subjects had in the PWV a significant increase of approximately 27% (p < 0.001). Conclusion: The new test protocol involving HUTT standardized to a height of hydrostatic column at 133 cm causes typical hemodynamics responses during orthostatic loading. Individual analysis of the subjects revealed subclinical orthostatic disorders (OSD) in up to 52% of the test persons. During HUTT, all test subjects showed a significant increase in PWV. The new innovative HUTT protocol can be applied in multi-center studies in healthy subjects to detect preclinical forms of orthostatic disorders under standard gravity load conditions.
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spelling pubmed-79988282021-03-28 Effects of an Innovative Head-Up Tilt Protocol on Blood Pressure and Arterial Stiffness Changes Dorogovtsev, Victor N. Yankevich, Dmitry S. Goswami, Nandu J Clin Med Article The objective of our study was to identify blood pressure (BP) and pulse wave velocity (PWV) changes during orthostatic loading, using a new the head-up tilt test (HUTT), which incorporates the usage of a standardized hydrostatic column height. Methods: 40 healthy subjects 20–32 years performed HUTT, which was standardized to a height of the hydrostatic column at 133 cm. Exposure time was 10 min in each of 3 positions: horizontal supine 1, HUTT, and horizontal supine 2. The individual tilt up angle made it possible to set the standard value of the hydrostatic column. Hemodynamic parameters were recorded beat to beat using “Task Force Monitor 3040 i”, pulse-wave velocity (PWV) was measured with a sphygmograph–sphygmomanometer VaSera VS1500N. Results: Orthostatic loading caused a significant increase in heart rate (HR) and a decrease in stroke volume (SV) (p < 0.05) but no significant reductions in cardiac output, changes in total vascular resistance (TVR), or BP. An analysis of personalized data on systolic blood pressure (SBP) changes in tilt up position as compared to horizontal position (ΔSBP) revealed non-significant changes in this index in 48% of subjects (orthostatic normotension group), in 32% there was a significant decrease in it (orthostatic hypotension group) and in 20% there was a significant increase in it (orthostatic hypertension group). These orthostatic changes were not accompanied by any clinical symptoms and/or syncope. During HUTT, all subjects had in the PWV a significant increase of approximately 27% (p < 0.001). Conclusion: The new test protocol involving HUTT standardized to a height of hydrostatic column at 133 cm causes typical hemodynamics responses during orthostatic loading. Individual analysis of the subjects revealed subclinical orthostatic disorders (OSD) in up to 52% of the test persons. During HUTT, all test subjects showed a significant increase in PWV. The new innovative HUTT protocol can be applied in multi-center studies in healthy subjects to detect preclinical forms of orthostatic disorders under standard gravity load conditions. MDPI 2021-03-13 /pmc/articles/PMC7998828/ /pubmed/33805654 http://dx.doi.org/10.3390/jcm10061198 Text en © 2021 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
Dorogovtsev, Victor N.
Yankevich, Dmitry S.
Goswami, Nandu
Effects of an Innovative Head-Up Tilt Protocol on Blood Pressure and Arterial Stiffness Changes
title Effects of an Innovative Head-Up Tilt Protocol on Blood Pressure and Arterial Stiffness Changes
title_full Effects of an Innovative Head-Up Tilt Protocol on Blood Pressure and Arterial Stiffness Changes
title_fullStr Effects of an Innovative Head-Up Tilt Protocol on Blood Pressure and Arterial Stiffness Changes
title_full_unstemmed Effects of an Innovative Head-Up Tilt Protocol on Blood Pressure and Arterial Stiffness Changes
title_short Effects of an Innovative Head-Up Tilt Protocol on Blood Pressure and Arterial Stiffness Changes
title_sort effects of an innovative head-up tilt protocol on blood pressure and arterial stiffness changes
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7998828/
https://www.ncbi.nlm.nih.gov/pubmed/33805654
http://dx.doi.org/10.3390/jcm10061198
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