Congenital heart disease (CHD) is often comprised of complex three-dimensional (3D) anatomy that must be well understood to assess the pathophysiological consequences and guide therapy. Thus, detailed cardiac imaging for early detection and planning of interventional and/or surgical treatment is paramount. Advanced technologies have revolutionized diagnostic and therapeutic practice in CHD, thus playing an increasing role in its management. Traditional reliance on standard imaging modalities including echocardiography, cardiac computed tomography (CT) and magnetic resonance imaging (MRI) has been augmented by the use of recent technologies such as 3D printing, virtual reality, augmented reality, computational modelling, and artificial intel...
Advances in biomedical engineering have led to three-dimensional (3D)-printed models being used for ...
The past several decades have seen remarkable advancements in percutaneous interventions for treatme...
Structural heart disease (SHD) is a new field within cardiovascular medicine. Traditional imaging mo...
Congenital heart disease (CHD) is often comprised of complex three-dimensional (3D) anatomy that mus...
Congenital heart disease (CHD) is often comprised of complex three-dimensional (3D) anatomy that mus...
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...
Understanding the anatomical features and generation of realistic three-dimensional (3D) visualizati...
Three-dimensional (3D) printing technology has become increasingly used in the medical field, with r...
Abstract Congenital heart diseases causing significant hemodynamic and functional cons...
Congenital heart disease (CHD) encompasses a heterogenous group of lesions whereby the anatomic stru...
Both three-dimensional (3D) printing and virtual reality (VR) are reported as being superior to the ...
Both three-dimensional (3D) printing and virtual reality (VR) are reported as being superior to the ...
Survival in congenital heart disease has steadily improved since 1938, when Dr. Robert Gross success...
Abstract Beginning with the discovery of X-rays to the development of three-dimensional (3D) imagin...
Advances in biomedical engineering have led to three-dimensional (3D)-printed models being used for ...
The past several decades have seen remarkable advancements in percutaneous interventions for treatme...
Structural heart disease (SHD) is a new field within cardiovascular medicine. Traditional imaging mo...
Congenital heart disease (CHD) is often comprised of complex three-dimensional (3D) anatomy that mus...
Congenital heart disease (CHD) is often comprised of complex three-dimensional (3D) anatomy that mus...
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...
Understanding the anatomical features and generation of realistic three-dimensional (3D) visualizati...
Three-dimensional (3D) printing technology has become increasingly used in the medical field, with r...
Abstract Congenital heart diseases causing significant hemodynamic and functional cons...
Congenital heart disease (CHD) encompasses a heterogenous group of lesions whereby the anatomic stru...
Both three-dimensional (3D) printing and virtual reality (VR) are reported as being superior to the ...
Both three-dimensional (3D) printing and virtual reality (VR) are reported as being superior to the ...
Survival in congenital heart disease has steadily improved since 1938, when Dr. Robert Gross success...
Abstract Beginning with the discovery of X-rays to the development of three-dimensional (3D) imagin...
Advances in biomedical engineering have led to three-dimensional (3D)-printed models being used for ...
The past several decades have seen remarkable advancements in percutaneous interventions for treatme...
Structural heart disease (SHD) is a new field within cardiovascular medicine. Traditional imaging mo...