Aortic root dimensions are predominantly determined by genetic factors: a classical twin study
Objectives Previous studies using transthoracic echocardiography (TTE) observed moderate heritability of aortic root dimensions. Computed tomography angiography (CTA) might provide more accurate heritability estimates. Our primary aim was to assess the heritability of the aortic root with CTA. Our s...
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Published in | European radiology Vol. 27; no. 6; pp. 2419 - 2425 |
---|---|
Main Authors | , , , , , , , , , , , , , , |
Format | Journal Article |
Language | English |
Published |
Berlin/Heidelberg
Springer Berlin Heidelberg
01.06.2017
Springer Nature B.V |
Subjects | |
Online Access | Get full text |
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Abstract | Objectives
Previous studies using transthoracic echocardiography (TTE) observed moderate heritability of aortic root dimensions. Computed tomography angiography (CTA) might provide more accurate heritability estimates. Our primary aim was to assess the heritability of the aortic root with CTA. Our secondary aim was to derive TTE-based heritability and compare this with the CTA-based results.
Methods
In the BUDAPEST-GLOBAL study 198 twin subjects (118 monozygotic, 80 dizygotic; age 56.1 ± 9.4 years; 126 female) underwent CTA and TTE. We assessed the diameter of the left ventricular outflow tract (LVOT), annulus, sinus of Valsalva, sinotubular junction and ascending aorta. Heritability was assessed using ACDE model (
A
additive genetic,
C
common environmental,
D
dominant genetic,
E
unique environmental factors).
Results
Based on CTA, additive genetic effects were dominant (LVOT:
A
= 0.67,
E
= 0.33; annulus:
A
= 0.76,
E
= 0.24; sinus of Valsalva:
A
= 0.83,
E
= 0.17; sinotubular junction:
A
= 0.82,
E
= 0.18; ascending aorta:
A
= 0.75,
E
= 0.25). TTE-derived measurements showed moderate to no genetic influence (LVOT:
A
= 0.38,
E
= 0.62; annulus:
C
= 0.47,
E
= 0.53; sinus of Valsalva:
C
= 0.63,
E
= 0.37; sinotubular junction:
C
= 0.45,
E
= 0.55; ascending aorta:
A
= 0.67,
E
= 0.33).
Conclusion
CTA-based assessment suggests that aortic root dimensions are predominantly determined by genetic factors. TTE-based measurements showed moderate to no genetic influence. The choice of measurement method has substantial impact on heritability estimates.
Key Points
•
Aortic root dimensions are determined by genetic and environmental effects.
•
Transthoracic echocardiography (TTE) demonstrated moderate to no genetic effects on aortic root dimensions.
•
Computed tomography angiography might provide more accurate heritability estimates compared to TTE.
•
Three-dimensional imaging techniques are needed to reliably quantify aortic root dimensions. |
---|---|
AbstractList | Previous studies using transthoracic echocardiography (TTE) observed moderate heritability of aortic root dimensions. Computed tomography angiography (CTA) might provide more accurate heritability estimates. Our primary aim was to assess the heritability of the aortic root with CTA. Our secondary aim was to derive TTE-based heritability and compare this with the CTA-based results.
In the BUDAPEST-GLOBAL study 198 twin subjects (118 monozygotic, 80 dizygotic; age 56.1 ± 9.4 years; 126 female) underwent CTA and TTE. We assessed the diameter of the left ventricular outflow tract (LVOT), annulus, sinus of Valsalva, sinotubular junction and ascending aorta. Heritability was assessed using ACDE model (A additive genetic, C common environmental, D dominant genetic, E unique environmental factors).
Based on CTA, additive genetic effects were dominant (LVOT: A = 0.67, E = 0.33; annulus: A = 0.76, E = 0.24; sinus of Valsalva: A = 0.83, E = 0.17; sinotubular junction: A = 0.82, E = 0.18; ascending aorta: A = 0.75, E = 0.25). TTE-derived measurements showed moderate to no genetic influence (LVOT: A = 0.38, E = 0.62; annulus: C = 0.47, E = 0.53; sinus of Valsalva: C = 0.63, E = 0.37; sinotubular junction: C = 0.45, E = 0.55; ascending aorta: A = 0.67, E = 0.33).
CTA-based assessment suggests that aortic root dimensions are predominantly determined by genetic factors. TTE-based measurements showed moderate to no genetic influence. The choice of measurement method has substantial impact on heritability estimates.
• Aortic root dimensions are determined by genetic and environmental effects. • Transthoracic echocardiography (TTE) demonstrated moderate to no genetic effects on aortic root dimensions. • Computed tomography angiography might provide more accurate heritability estimates compared to TTE. • Three-dimensional imaging techniques are needed to reliably quantify aortic root dimensions. Previous studies using transthoracic echocardiography (TTE) observed moderate heritability of aortic root dimensions. Computed tomography angiography (CTA) might provide more accurate heritability estimates. Our primary aim was to assess the heritability of the aortic root with CTA. Our secondary aim was to derive TTE-based heritability and compare this with the CTA-based results.OBJECTIVESPrevious studies using transthoracic echocardiography (TTE) observed moderate heritability of aortic root dimensions. Computed tomography angiography (CTA) might provide more accurate heritability estimates. Our primary aim was to assess the heritability of the aortic root with CTA. Our secondary aim was to derive TTE-based heritability and compare this with the CTA-based results.In the BUDAPEST-GLOBAL study 198 twin subjects (118 monozygotic, 80 dizygotic; age 56.1 ± 9.4 years; 126 female) underwent CTA and TTE. We assessed the diameter of the left ventricular outflow tract (LVOT), annulus, sinus of Valsalva, sinotubular junction and ascending aorta. Heritability was assessed using ACDE model (A additive genetic, C common environmental, D dominant genetic, E unique environmental factors).METHODSIn the BUDAPEST-GLOBAL study 198 twin subjects (118 monozygotic, 80 dizygotic; age 56.1 ± 9.4 years; 126 female) underwent CTA and TTE. We assessed the diameter of the left ventricular outflow tract (LVOT), annulus, sinus of Valsalva, sinotubular junction and ascending aorta. Heritability was assessed using ACDE model (A additive genetic, C common environmental, D dominant genetic, E unique environmental factors).Based on CTA, additive genetic effects were dominant (LVOT: A = 0.67, E = 0.33; annulus: A = 0.76, E = 0.24; sinus of Valsalva: A = 0.83, E = 0.17; sinotubular junction: A = 0.82, E = 0.18; ascending aorta: A = 0.75, E = 0.25). TTE-derived measurements showed moderate to no genetic influence (LVOT: A = 0.38, E = 0.62; annulus: C = 0.47, E = 0.53; sinus of Valsalva: C = 0.63, E = 0.37; sinotubular junction: C = 0.45, E = 0.55; ascending aorta: A = 0.67, E = 0.33).RESULTSBased on CTA, additive genetic effects were dominant (LVOT: A = 0.67, E = 0.33; annulus: A = 0.76, E = 0.24; sinus of Valsalva: A = 0.83, E = 0.17; sinotubular junction: A = 0.82, E = 0.18; ascending aorta: A = 0.75, E = 0.25). TTE-derived measurements showed moderate to no genetic influence (LVOT: A = 0.38, E = 0.62; annulus: C = 0.47, E = 0.53; sinus of Valsalva: C = 0.63, E = 0.37; sinotubular junction: C = 0.45, E = 0.55; ascending aorta: A = 0.67, E = 0.33).CTA-based assessment suggests that aortic root dimensions are predominantly determined by genetic factors. TTE-based measurements showed moderate to no genetic influence. The choice of measurement method has substantial impact on heritability estimates.CONCLUSIONCTA-based assessment suggests that aortic root dimensions are predominantly determined by genetic factors. TTE-based measurements showed moderate to no genetic influence. The choice of measurement method has substantial impact on heritability estimates.• Aortic root dimensions are determined by genetic and environmental effects. • Transthoracic echocardiography (TTE) demonstrated moderate to no genetic effects on aortic root dimensions. • Computed tomography angiography might provide more accurate heritability estimates compared to TTE. • Three-dimensional imaging techniques are needed to reliably quantify aortic root dimensions.KEY POINTS• Aortic root dimensions are determined by genetic and environmental effects. • Transthoracic echocardiography (TTE) demonstrated moderate to no genetic effects on aortic root dimensions. • Computed tomography angiography might provide more accurate heritability estimates compared to TTE. • Three-dimensional imaging techniques are needed to reliably quantify aortic root dimensions. Objectives Previous studies using transthoracic echocardiography (TTE) observed moderate heritability of aortic root dimensions. Computed tomography angiography (CTA) might provide more accurate heritability estimates. Our primary aim was to assess the heritability of the aortic root with CTA. Our secondary aim was to derive TTE-based heritability and compare this with the CTA-based results. Methods In the BUDAPEST-GLOBAL study 198 twin subjects (118 monozygotic, 80 dizygotic; age 56.1±9.4 years; 126 female) underwent CTA and TTE. We assessed the diameter of the left ventricular outflow tract (LVOT), annulus, sinus of Valsalva, sinotubular junction and ascending aorta. Heritability was assessed using ACDE model (A additive genetic, C common environmental, D dominant genetic, E unique environmental factors). Results Based on CTA, additive genetic effects were dominant (LVOT: A=0.67, E=0.33; annulus: A=0.76, E=0.24; sinus of Valsalva: A=0.83, E=0.17; sinotubular junction: A=0.82, E=0.18; ascending aorta: A=0.75, E=0.25). TTE-derived measurements showed moderate to no genetic influence (LVOT: A=0.38, E=0.62; annulus: C=0.47, E=0.53; sinus of Valsalva: C=0.63, E=0.37; sinotubular junction: C=0.45, E=0.55; ascending aorta: A=0.67, E=0.33). Conclusion CTA-based assessment suggests that aortic root dimensions are predominantly determined by genetic factors. TTE-based measurements showed moderate to no genetic influence. The choice of measurement method has substantial impact on heritability estimates. Key Points * Aortic root dimensions are determined by genetic and environmental effects. * Transthoracic echocardiography (TTE) demonstrated moderate to no genetic effects on aortic root dimensions. * Computed tomography angiography might provide more accurate heritability estimates compared to TTE. * Three-dimensional imaging techniques are needed to reliably quantify aortic root dimensions. Objectives Previous studies using transthoracic echocardiography (TTE) observed moderate heritability of aortic root dimensions. Computed tomography angiography (CTA) might provide more accurate heritability estimates. Our primary aim was to assess the heritability of the aortic root with CTA. Our secondary aim was to derive TTE-based heritability and compare this with the CTA-based results. Methods In the BUDAPEST-GLOBAL study 198 twin subjects (118 monozygotic, 80 dizygotic; age 56.1 ± 9.4 years; 126 female) underwent CTA and TTE. We assessed the diameter of the left ventricular outflow tract (LVOT), annulus, sinus of Valsalva, sinotubular junction and ascending aorta. Heritability was assessed using ACDE model ( A additive genetic, C common environmental, D dominant genetic, E unique environmental factors). Results Based on CTA, additive genetic effects were dominant (LVOT: A = 0.67, E = 0.33; annulus: A = 0.76, E = 0.24; sinus of Valsalva: A = 0.83, E = 0.17; sinotubular junction: A = 0.82, E = 0.18; ascending aorta: A = 0.75, E = 0.25). TTE-derived measurements showed moderate to no genetic influence (LVOT: A = 0.38, E = 0.62; annulus: C = 0.47, E = 0.53; sinus of Valsalva: C = 0.63, E = 0.37; sinotubular junction: C = 0.45, E = 0.55; ascending aorta: A = 0.67, E = 0.33). Conclusion CTA-based assessment suggests that aortic root dimensions are predominantly determined by genetic factors. TTE-based measurements showed moderate to no genetic influence. The choice of measurement method has substantial impact on heritability estimates. Key Points • Aortic root dimensions are determined by genetic and environmental effects. • Transthoracic echocardiography (TTE) demonstrated moderate to no genetic effects on aortic root dimensions. • Computed tomography angiography might provide more accurate heritability estimates compared to TTE. • Three-dimensional imaging techniques are needed to reliably quantify aortic root dimensions. |
Author | Kovács, Attila Jermendy, György Merkely, Béla Celeng, Csilla Károlyi, Mihály Maurovich-Horvat, Pál Horváth, Tamás Molnár, Andrea Ágnes Szilveszter, Bálint Voros, Szilard Tárnoki, Ádám D. Kolossváry, Márton Karády, Júlia Jermendy, Ádám L. Tárnoki, Dávid L. |
Author_xml | – sequence: 1 givenname: Csilla surname: Celeng fullname: Celeng, Csilla organization: MTA-SE Cardiovascular Imaging Research Group, Heart and Vascular Center, Semmelweis University – sequence: 2 givenname: Márton surname: Kolossváry fullname: Kolossváry, Márton organization: MTA-SE Cardiovascular Imaging Research Group, Heart and Vascular Center, Semmelweis University – sequence: 3 givenname: Attila surname: Kovács fullname: Kovács, Attila organization: MTA-SE Cardiovascular Imaging Research Group, Heart and Vascular Center, Semmelweis University – sequence: 4 givenname: Andrea Ágnes surname: Molnár fullname: Molnár, Andrea Ágnes organization: MTA-SE Cardiovascular Imaging Research Group, Heart and Vascular Center, Semmelweis University – sequence: 5 givenname: Bálint surname: Szilveszter fullname: Szilveszter, Bálint organization: MTA-SE Cardiovascular Imaging Research Group, Heart and Vascular Center, Semmelweis University – sequence: 6 givenname: Tamás surname: Horváth fullname: Horváth, Tamás organization: Department of Hydrodynamic Systems, Budapest University of Technology and Economics – sequence: 7 givenname: Mihály surname: Károlyi fullname: Károlyi, Mihály organization: MTA-SE Cardiovascular Imaging Research Group, Heart and Vascular Center, Semmelweis University – sequence: 8 givenname: Ádám L. surname: Jermendy fullname: Jermendy, Ádám L. organization: MTA-SE Cardiovascular Imaging Research Group, Heart and Vascular Center, Semmelweis University – sequence: 9 givenname: Ádám D. surname: Tárnoki fullname: Tárnoki, Ádám D. organization: Department of Radiology and Oncotherapy, Semmelweis University – sequence: 10 givenname: Dávid L. surname: Tárnoki fullname: Tárnoki, Dávid L. organization: Department of Radiology and Oncotherapy, Semmelweis University – sequence: 11 givenname: Júlia surname: Karády fullname: Karády, Júlia organization: MTA-SE Cardiovascular Imaging Research Group, Heart and Vascular Center, Semmelweis University – sequence: 12 givenname: Szilard surname: Voros fullname: Voros, Szilard organization: Global Genomics Group – sequence: 13 givenname: György surname: Jermendy fullname: Jermendy, György organization: Medical Department, Bajcsy-Zsilinszky Hospital – sequence: 14 givenname: Béla surname: Merkely fullname: Merkely, Béla organization: MTA-SE Cardiovascular Imaging Research Group, Heart and Vascular Center, Semmelweis University – sequence: 15 givenname: Pál surname: Maurovich-Horvat fullname: Maurovich-Horvat, Pál email: p.maurovich.horvat@mail.harvard.edu organization: MTA-SE Cardiovascular Imaging Research Group, Heart and Vascular Center, Semmelweis University |
BackLink | https://www.ncbi.nlm.nih.gov/pubmed/27659700$$D View this record in MEDLINE/PubMed |
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CitedBy_id | crossref_primary_10_1016_j_ebiom_2021_103783 crossref_primary_10_3390_medsci10020032 crossref_primary_10_1038_s44161_022_00058_0 crossref_primary_10_1038_s41569_021_00570_z |
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Copyright | European Society of Radiology 2016 European Radiology is a copyright of Springer, 2017. |
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Previous studies using transthoracic echocardiography (TTE) observed moderate heritability of aortic root dimensions. Computed tomography... Previous studies using transthoracic echocardiography (TTE) observed moderate heritability of aortic root dimensions. Computed tomography angiography (CTA)... Objectives Previous studies using transthoracic echocardiography (TTE) observed moderate heritability of aortic root dimensions. Computed tomography... |
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SubjectTerms | Aorta - anatomy & histology Aorta - diagnostic imaging Atherosclerosis Body mass index Cardiovascular disease Computed Tomography Computed Tomography Angiography - methods Coronary vessels Diagnostic Radiology Doppler effect Echocardiography - methods Estimates Female Genetic Determinism Genotype Humans Imaging Imaging, Three-Dimensional - methods Internal Medicine Interventional Radiology Male Medical imaging Medicine Medicine & Public Health Middle Aged Multidetector Computed Tomography - methods Multimodal Imaging - methods Neuroradiology Radiology Sinus of Valsalva - anatomy & histology Sinus of Valsalva - diagnostic imaging Sinuses Tomography Twin studies Twins Twins, Dizygotic Twins, Monozygotic Ultrasound |
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Title | Aortic root dimensions are predominantly determined by genetic factors: a classical twin study |
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