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Author Spotlight: Advancing Human Cardiac Anatomy Through Multi-Scale Analysis of Hearts
Published on: June 28, 2024
Diversity and Determinants of the Three-dimensional Anatomical Axis of the Heart as Revealed Using Multidetector-row
Shumpei Mori1, Robert H Anderson2, Natsuko Tahara1
1Division of Cardiovascular Medicine, Department of Internal Medicine, Kobe University Graduate School of Medicine, Kobe, Japan.
Insights
Individual heart anatomy varies significantly. This study quantifies anatomical cardiac long axis diversity using CT angiography, revealing distinct rotation and aortic wedging patterns that explain 3D heart variations.
Area of Science:
- Anatomical imaging
- Cardiovascular morphology
- Medical imaging analysis
Background:
- Individual heart location and anatomical cardiac long axis exhibit significant variation.
- Determinants of this anatomical diversity remain under-investigated.
Purpose of the Study:
- To systematically investigate the anatomical cardiac long axis diversity and its determinants.
- To quantify individual variations in cardiac anatomy using computed tomographic angiography.
Main Methods:
- 100 patients undergoing coronary arterial computed tomographic angiography were analyzed.
- Anatomical cardiac long axis vectors were decomposed into horizontal, frontal, and sagittal planes.
- Rotation angles and aortic wedging were measured to define cardiac orientation.
Main Results:
- Mean horizontal, frontal, and sagittal rotation angles were 48.7°, 52.3°, and 34.0°, respectively.
- Mean aortic wedging was 42.7 mm, with a mean aortic root rotation of 5.3°.
- Aortic root rotation correlated with horizontal cardiac rotation; aortic wedging correlated with frontal and sagittal rotation.
Conclusions:
- Significant individual variation exists in the anatomical axis of the living heart.
- Distinct rotation and aortic wedging mechanisms contribute to the three-dimensional diversity of heart anatomy.
- This quantification provides insights into cardiac morphological variability.
Abstract:
The location of the heart within the thorax varies significantly between individuals. The resultant diversity of the anatomical cardiac long axis, however, and its determinants, have yet to be systematically investigated. We enrolled 100 consecutive patients undergoing coronary arterial computed tomographic angiography, decomposing the vector of the anatomical cardiac long axis by projecting it to horizontal, frontal, and sagittal planes. The projected vectors on each plane were then converted into three rotation angles using coordinate transformation. We then measured the extent of aortic wedging, using the vertical distance between the inferior margins of the non-adjacent aortic sinus and the epicardium. We took the aortic root rotation angle to be zero when an "en face" view of the right coronary aortic sinus was obtained in the frontal view, defining leftward rotation to be positive. The mean horizontal, frontal, and sagittal rotation angles were 48.7° ± 9.5°, 52.3° ± 12.0°, and 34.0° ± 11.2°, respectively. The mean extent of aortic wedging, and the aortic root rotation angle, were 42.7 ± 9.8 mm, and 5.3° ± 16.4°. Horizontal rotation of the anatomical axis was associated with leftward and ventral rotation, and vice versa. Multivariate analysis showed aortic root rotation to be associated with horizontal cardiac rotation, while aortic wedging is associated with frontal and sagittal cardiac rotation. We have quantified the marked individual variation observed in the anatomical axis of the living heart, identifying the different mechanisms involved in producing the marked three-dimensional diversity of the living heart. Anat Rec, 300:1083-1092, 2017. © 2017 Wiley Periodicals, Inc.
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