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paraphrasedoutput:Methods' Background The goal of a transcatheter mitral valve-in-Vet design of a balloon-expandable valve was to investigate the role of 3-dimensional printing in facilitating the development of a transcatheter mitral valve-in-Ville implant of a balloon-expandable valve from November 2020 to April 2021. "Clinical Trial Registration System" — A balloon-expandable valve's guidance led to concrete decisions, the avoidance of complications, and success valuation. Conclusions3D printed Mitral valve models contributed to precise decisions, diagnosis, and evaluation of outcomes.
Source link: https://doi.org/10.3389/fcvm.2022.894160
"The longitudinal strain of the RV free wall was determined by both 2D- and 3D-STE. "Because of controls, patients with an ischemic or non-ischemic etiology of end-stage HF had lower 2D-RVFWLS, 3D-RVFWLS, and RV ejection fraction values were determined by both 2D-STE. Patients with non-ischemic cardiomyopathies had significantly lower 3D-RVFWLS and RVEF values than those with ischemic cardiomyopathies, according to a study by the two subgroups, although 2D-RVFWLS and conventional RV function parameters did not differ between the two subgroups.
Source link: https://doi.org/10.3389/fcvm.2022.765191
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