Cargando…

The common carotid artery provides significant pressure wave dampening in the young adult sheep()()

BACKGROUND: It has been established that the central elastic arteries of the mammalian circulation dampen the high pulse pressure emanating from the left ventricle, so that the pulsations in distal arterioles, such as in the cerebral circulation, are of lower amplitude than more centrally. However,...

Descripción completa

Detalles Bibliográficos
Autores principales: James, Natalie L., Milijasevic, Zoran, Ujhazy, Anthony, Edwards, Glenn, Jermyn, Kieri, Mynard, Jonathan P., Celermajer, David S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6612755/
https://www.ncbi.nlm.nih.gov/pubmed/31321284
http://dx.doi.org/10.1016/j.ijcha.2019.03.003
_version_ 1783432930809348096
author James, Natalie L.
Milijasevic, Zoran
Ujhazy, Anthony
Edwards, Glenn
Jermyn, Kieri
Mynard, Jonathan P.
Celermajer, David S.
author_facet James, Natalie L.
Milijasevic, Zoran
Ujhazy, Anthony
Edwards, Glenn
Jermyn, Kieri
Mynard, Jonathan P.
Celermajer, David S.
author_sort James, Natalie L.
collection PubMed
description BACKGROUND: It has been established that the central elastic arteries of the mammalian circulation dampen the high pulse pressure emanating from the left ventricle, so that the pulsations in distal arterioles, such as in the cerebral circulation, are of lower amplitude than more centrally. However, the contribution of the common carotid artery (CCA) to protection of the cerebral microvasculature from high pulse pressure is not known, specifically to what extent viscoelastic energy dissipation in the arterial wall might contribute to the shock absorbing function of the large conduit arteries. METHODS: Young adult sheep (n = 6) were anaesthetised and their CCAs (n = 7) exposed. Pressure catheters were inserted 10–15 cm apart, proximally and distally in the CCA; a flow probe was placed proximally on the vessel. RESULTS: The median dp/dt(max) on the pressure rise of the arterial wave upstroke for the proximal CCA was 619 mm Hg/s and for the distal CCA it was significantly lower, at 197 mm Hg/s (p = 0.0156; n = 7). The median pulse pressure of the proximal CCA was 24 mm Hg/s; distal pulse pressure was significantly lower, at 18 mm Hg/s (p = 0.0156; n = 7). The median flow rate was 0.97 L/min with an interquartile range from 0.51 to 1.15 L/min. CONCLUSIONS: The native CCA in the young adult sheep is an effective “pressure dampener” in the arterial circulation, reducing both pressure slope and pulse pressure, most likely via viscous dampening in the arterial wall.
format Online
Article
Text
id pubmed-6612755
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher Elsevier
record_format MEDLINE/PubMed
spelling pubmed-66127552019-07-18 The common carotid artery provides significant pressure wave dampening in the young adult sheep()() James, Natalie L. Milijasevic, Zoran Ujhazy, Anthony Edwards, Glenn Jermyn, Kieri Mynard, Jonathan P. Celermajer, David S. Int J Cardiol Heart Vasc Original Paper BACKGROUND: It has been established that the central elastic arteries of the mammalian circulation dampen the high pulse pressure emanating from the left ventricle, so that the pulsations in distal arterioles, such as in the cerebral circulation, are of lower amplitude than more centrally. However, the contribution of the common carotid artery (CCA) to protection of the cerebral microvasculature from high pulse pressure is not known, specifically to what extent viscoelastic energy dissipation in the arterial wall might contribute to the shock absorbing function of the large conduit arteries. METHODS: Young adult sheep (n = 6) were anaesthetised and their CCAs (n = 7) exposed. Pressure catheters were inserted 10–15 cm apart, proximally and distally in the CCA; a flow probe was placed proximally on the vessel. RESULTS: The median dp/dt(max) on the pressure rise of the arterial wave upstroke for the proximal CCA was 619 mm Hg/s and for the distal CCA it was significantly lower, at 197 mm Hg/s (p = 0.0156; n = 7). The median pulse pressure of the proximal CCA was 24 mm Hg/s; distal pulse pressure was significantly lower, at 18 mm Hg/s (p = 0.0156; n = 7). The median flow rate was 0.97 L/min with an interquartile range from 0.51 to 1.15 L/min. CONCLUSIONS: The native CCA in the young adult sheep is an effective “pressure dampener” in the arterial circulation, reducing both pressure slope and pulse pressure, most likely via viscous dampening in the arterial wall. Elsevier 2019-03-22 /pmc/articles/PMC6612755/ /pubmed/31321284 http://dx.doi.org/10.1016/j.ijcha.2019.03.003 Text en © 2019 The Authors http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Original Paper
James, Natalie L.
Milijasevic, Zoran
Ujhazy, Anthony
Edwards, Glenn
Jermyn, Kieri
Mynard, Jonathan P.
Celermajer, David S.
The common carotid artery provides significant pressure wave dampening in the young adult sheep()()
title The common carotid artery provides significant pressure wave dampening in the young adult sheep()()
title_full The common carotid artery provides significant pressure wave dampening in the young adult sheep()()
title_fullStr The common carotid artery provides significant pressure wave dampening in the young adult sheep()()
title_full_unstemmed The common carotid artery provides significant pressure wave dampening in the young adult sheep()()
title_short The common carotid artery provides significant pressure wave dampening in the young adult sheep()()
title_sort common carotid artery provides significant pressure wave dampening in the young adult sheep()()
topic Original Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6612755/
https://www.ncbi.nlm.nih.gov/pubmed/31321284
http://dx.doi.org/10.1016/j.ijcha.2019.03.003
work_keys_str_mv AT jamesnataliel thecommoncarotidarteryprovidessignificantpressurewavedampeningintheyoungadultsheep
AT milijaseviczoran thecommoncarotidarteryprovidessignificantpressurewavedampeningintheyoungadultsheep
AT ujhazyanthony thecommoncarotidarteryprovidessignificantpressurewavedampeningintheyoungadultsheep
AT edwardsglenn thecommoncarotidarteryprovidessignificantpressurewavedampeningintheyoungadultsheep
AT jermynkieri thecommoncarotidarteryprovidessignificantpressurewavedampeningintheyoungadultsheep
AT mynardjonathanp thecommoncarotidarteryprovidessignificantpressurewavedampeningintheyoungadultsheep
AT celermajerdavids thecommoncarotidarteryprovidessignificantpressurewavedampeningintheyoungadultsheep
AT jamesnataliel commoncarotidarteryprovidessignificantpressurewavedampeningintheyoungadultsheep
AT milijaseviczoran commoncarotidarteryprovidessignificantpressurewavedampeningintheyoungadultsheep
AT ujhazyanthony commoncarotidarteryprovidessignificantpressurewavedampeningintheyoungadultsheep
AT edwardsglenn commoncarotidarteryprovidessignificantpressurewavedampeningintheyoungadultsheep
AT jermynkieri commoncarotidarteryprovidessignificantpressurewavedampeningintheyoungadultsheep
AT mynardjonathanp commoncarotidarteryprovidessignificantpressurewavedampeningintheyoungadultsheep
AT celermajerdavids commoncarotidarteryprovidessignificantpressurewavedampeningintheyoungadultsheep