Assessment of sex differences in ventricular-vascular coupling of left ventricular and aortic flow derived from 4D flow MRI in healthy, young adults

To gain further insight into male–female differences in cardiovascular conditions it is important to understand sex differences in healthy populations. A previous study from our group of 39 healthy young volunteers (20–35 years) paradoxically found that men had greater left ventricular (LV) kinetic...

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Published inJournal of biomechanics Vol. 117; p. 110276
Main Authors Pewowaruk, Ryan, Rutkowski, David, Johnson, Cody, Wolfinger, Amanda, Roldán-Alzate, Alejandro
Format Journal Article
LanguageEnglish
Published United States Elsevier Ltd 05.03.2021
Elsevier Limited
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Abstract To gain further insight into male–female differences in cardiovascular conditions it is important to understand sex differences in healthy populations. A previous study from our group of 39 healthy young volunteers (20–35 years) paradoxically found that men had greater left ventricular (LV) kinetic energy (KE) but women had greater LV vorticity. We reanalyzed cardiac four-dimensional flow MRI data from 20 of the original subjects (10 male and 10 female) to quantify aortic flow in addition to LV flow. The combination of LV and aortic flow parameters were then used to calculate ventricular vascular coupling of KE and vorticity. The sex difference found in LV flow were not found in aortic flow and the ventricular-vascular coupling of LV-to-aortic flow was similar between men and women. Dimensional analysis to account for differences in cardiac output and ventricular volume explained the differences found in LV flow. The analysis methods and results of this study may be of further use in understanding ventricular vascular coupling of transported flow variables in healthy sex differences, healthy aging, and various cardiovascular conditions.
AbstractList To gain further insight into male–female differences in cardiovascular conditions it is important to understand sex differences in healthy populations. A previous study from our group of 39 healthy young volunteers (20–35 years) paradoxically found that men had greater left ventricular (LV) kinetic energy (KE) but women had greater LV vorticity. We reanalyzed cardiac four-dimensional flow MRI data from 20 of the original subjects (10 male and 10 female) to quantify aortic flow in addition to LV flow. The combination of LV and aortic flow parameters were then used to calculate ventricular vascular coupling of KE and vorticity. The sex difference found in LV flow were not found in aortic flow and the ventricular-vascular coupling of LV-to-aortic flow was similar between men and women. Dimensional analysis to account for differences in cardiac output and ventricular volume explained the differences found in LV flow. The analysis methods and results of this study may be of further use in understanding ventricular vascular coupling of transported flow variables in healthy sex differences, healthy aging, and various cardiovascular conditions.
To gain further insight into male–female differences in cardiovascular conditions it is important to understand sex differences in healthy populations. A previous study from our group of 39 healthy young volunteers (20–35 years) paradoxically found that men had greater left ventricular (LV) kinetic energy (KE) but women had greater LV vorticity. We reanalyzed cardiac four-dimensional flow MRI data from 20 of the original subjects (10 male and 10 female) to quantify aortic flow in addition to LV flow. The combination of LV and aortic flow parameters were then used to calculate ventricular vascular coupling of KE and vorticity. The sex difference found in LV flow were not found in aortic flow and the ventricular-vascular coupling of LV-to-aortic flow was similar between men and women. Dimensional analysis to account for differences in cardiac output and ventricular volume explained the differences found in LV flow. The analysis methods and results of this study may be of further use in understanding ventricular vascular coupling of transported flow variables in healthy sex differences, healthy aging, and various cardiovascular conditions.
ArticleNumber 110276
Author Wolfinger, Amanda
Pewowaruk, Ryan
Roldán-Alzate, Alejandro
Rutkowski, David
Johnson, Cody
AuthorAffiliation 2. Radiology, University of Wisconsin – Madison
1. Biomedical Engineering, University of Wisconsin – Madison
3. Mechanical Engineering, University of Wisconsin – Madison
AuthorAffiliation_xml – name: 3. Mechanical Engineering, University of Wisconsin – Madison
– name: 2. Radiology, University of Wisconsin – Madison
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  givenname: Ryan
  orcidid: 0000-0003-1190-7196
  surname: Pewowaruk
  fullname: Pewowaruk, Ryan
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  surname: Rutkowski
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  givenname: Cody
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  surname: Johnson
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  givenname: Alejandro
  surname: Roldán-Alzate
  fullname: Roldán-Alzate, Alejandro
  email: roldan@wisc.edu
  organization: Biomedical Engineering, University of Wisconsin – Madison, United States
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Keywords 4D flow MRI
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Ventricular vascular coupling
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Snippet To gain further insight into male–female differences in cardiovascular conditions it is important to understand sex differences in healthy populations. A...
To gain further insight into male-female differences in cardiovascular conditions it is important to understand sex differences in healthy populations. A...
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StartPage 110276
SubjectTerms 4D flow MRI
Aging
Aorta
Aorta - diagnostic imaging
Biofluids
Cardiac output
Coronary vessels
Coupling
Dimensional analysis
Energy
Female
Females
Gender aspects
Gender differences
Heart
Heart Ventricles - diagnostic imaging
Humans
Kinetic energy
Magnetic Resonance Imaging
Male
Mathematical analysis
Men
Population studies
Sex
Sex Characteristics
Sex differences
Shear stress
Software
Velocity
Ventricle
Ventricular Function, Left
Ventricular vascular coupling
Vorticity
Women
Young Adult
Young adults
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Title Assessment of sex differences in ventricular-vascular coupling of left ventricular and aortic flow derived from 4D flow MRI in healthy, young adults
URI https://dx.doi.org/10.1016/j.jbiomech.2021.110276
https://www.ncbi.nlm.nih.gov/pubmed/33545606
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https://pubmed.ncbi.nlm.nih.gov/PMC7920945
Volume 117
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