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October 22, 2022Clinical Anatomy4 citationsOpen Access

Three‐dimensional cardiac computed tomography compared with autopsied material for the assessment of the mitral valve

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AKAgata Krawczyk‐OżógMHMateusz K. HołdaJBJakub Batko

Key Result

Three-dimensional cardiac computed tomography significantly overestimated the intercommisural diameter, aorto-mural diameter, and perimeter of the mitral annulus compared to autopsy (all p<0.0001).

Study Design

Type

Cross-Sectional (n=171)

Structured PICO

Does three-dimensional cardiac computed tomography accurately measure mitral valve morphometrical features compared to macroscopic analysis of autopsied material?

P
Population
51 cardiac computed tomography scans and 120 adult autopsied human hearts without cardiovascular disease
I
Intervention
Three-dimensional (3D) cardiac computed tomography with 3D reconstruction and visualization software
C
Comparator
Macroscopic analysis of autopsied healthy human hearts
O
Outcome
Morphometrical features of the mitral valve (intercommisural diameter, aorto-mural diameter, perimeter of the mitral annulus, size of anterior mitral leaflet, height of P2 scallops)surrogate

Three-dimensional contrast-enhanced cardiac computed tomography significantly overestimates the measurements of the mitral annulus compared to postmortem analysis, which is important for precise non-invasive assessment of mitral valve size and structure.

Main Result

p-value: p=<0.0001

Abstract

To compare the morphometrical features of non-diseased mitral valves imaged in three-dimensional (3D) cardiac computed tomography with those analyzed macroscopically in autopsied healthy human hearts. A total of 51 cardiac computed tomography scans and 120 adult autopsied human hearts without cardiovascular disease were examined. The 3D reconstruction and visualization software (Mimics Innovation Suite 22, Materialise) was used for heart chambers semi-automatic segmentation and myocardial manual segmentation to visualize a 3D structure of the mitral valve complex and to perform all measurements. Direct comparison of corresponding mitral valve parameters revealed significant differences between obtained results. Significantly larger intercommisural diameter, aorto-mural diameter, and perimeter of the mitral annulus were observed in tomographic scans (all p < 0.0001). However, the intercommissural/aorto-mural diameter ratio showed comparable values for both groups. Nevertheless, the size of anterior mitral leaflet was higher in autopsied material. The height of the P2 scallops was the only parameter that show no significant difference between two groups (p = 0.3). The use of 3D postprocessing algorithms provides a very accurate image of the mitral valve structure, which could be useful for the precise non-invasive assessment of mitral valve size and structure. Three-dimensional contrast enhanced cardiac computed tomography significantly overestimates the measurements of the mitral annulus compared to postmortem analysis.

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Cite This Study

Krawczyk‐Ożóg et al. (2022) conducted a cross-sectional in Healthy human hearts without cardiovascular disease (n=171). Three-dimensional cardiac computed tomography vs. Macroscopic analysis in autopsied hearts was evaluated on Morphometrical features of the mitral valve including intercommisural diameter, aorto-mural diameter, and perimeter of the mitral annulus (p=<0.0001). Three-dimensional cardiac computed tomography significantly overestimated the intercommisural diameter, aorto-mural diameter, and perimeter of the mitral annulus compared to autopsy (all p<0.0001).

synapsesocial.com/papers/6a13da21a4182367b1625573https://doi.org/10.1002/ca.23967
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Multiplane transoesophageal echocardiography and morphology of regurgitant mitral valves in surgical repair1995 · 45 citations
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