Three-dimensional (3D) printing technology has become increasingly used in the medical field, with reports demonstrating its superior advantages in both educational and clinical value when compared with standard image visualizations or current diagnostic approaches. Patient-specific or personalized 3D printed models serve as a valuable tool in cardiovascular disease because of the difficulty associated with comprehending cardiovascular anatomy and pathology on 2D flat screens. Additionally, the added value of using 3D-printed models is especially apparent in congenital heart disease (CHD), due to its wide spectrum of anomalies and its complexity. This review provides an overview of 3D-printed models in pediatric CHD, with a focus on educati...
Abstract Congenital heart diseases causing significant hemodynamic and functional cons...
Understanding the anatomical features and generation of realistic three-dimensional (3D) visualizati...
Abstract Introduction Understanding congenital heart disease (CHD) is vital for medical personnel an...
Three-dimensional (3D) printing has shown great promise in medicine with increasing reports in conge...
Patient-specific three-dimensional (3D) printed models have been increasingly used in cardiology and...
Congenital heart disease (CHD) encompasses a heterogenous group of lesions whereby the anatomic stru...
Patient-specific three-dimensional (3D) printed models have been increasingly used in cardiology and...
Current diagnostic assessment tools remain suboptimal in demonstrating complex morphology of congeni...
<div><p>Objective</p><p>Current diagnostic assessment tools remain suboptimal in demonstrating compl...
Advances in biomedical engineering have led to three-dimensional (3D)-printed models being used for ...
International audienceBackground: Three-dimensional (3D) printing technology enables the translation...
The past several decades have seen remarkable advancements in percutaneous interventions for treatme...
International audienceBackground: Three-dimensional (3D) printing technology enables the translation...
International audienceBackground: Three-dimensional (3D) printing technology enables the translation...
Abstract Congenital heart diseases causing significant hemodynamic and functional cons...
Abstract Congenital heart diseases causing significant hemodynamic and functional cons...
Understanding the anatomical features and generation of realistic three-dimensional (3D) visualizati...
Abstract Introduction Understanding congenital heart disease (CHD) is vital for medical personnel an...
Three-dimensional (3D) printing has shown great promise in medicine with increasing reports in conge...
Patient-specific three-dimensional (3D) printed models have been increasingly used in cardiology and...
Congenital heart disease (CHD) encompasses a heterogenous group of lesions whereby the anatomic stru...
Patient-specific three-dimensional (3D) printed models have been increasingly used in cardiology and...
Current diagnostic assessment tools remain suboptimal in demonstrating complex morphology of congeni...
<div><p>Objective</p><p>Current diagnostic assessment tools remain suboptimal in demonstrating compl...
Advances in biomedical engineering have led to three-dimensional (3D)-printed models being used for ...
International audienceBackground: Three-dimensional (3D) printing technology enables the translation...
The past several decades have seen remarkable advancements in percutaneous interventions for treatme...
International audienceBackground: Three-dimensional (3D) printing technology enables the translation...
International audienceBackground: Three-dimensional (3D) printing technology enables the translation...
Abstract Congenital heart diseases causing significant hemodynamic and functional cons...
Abstract Congenital heart diseases causing significant hemodynamic and functional cons...
Understanding the anatomical features and generation of realistic three-dimensional (3D) visualizati...
Abstract Introduction Understanding congenital heart disease (CHD) is vital for medical personnel an...