Scaled physical models can be useful in analyzing stage-specific hemodynamics in the embryonic human heart to address correlations between early physical stressors and myocardial wall responses. We generated models of the cardiac blood space from reconstructions of four digitized human embryo images from Carnegie Collection at the Armed Forces Institute of Pathology. From physical scale models manufactured by stereolithography, compliant sleeves can be created for flow dynamics studies. This novel use of Carnegie collection images and graphical modeling software provides tools for broadening our understanding of normal and aberrant heart formation
We present a method to generate quantitative embryonic cardiovascular volumes at extremely high reso...
In this series, three dimensional computer graphics are used to present the anatomical structures in...
In this series, three dimensional computer graphics are used to present the anatomical structures in...
Scaled physical models can be useful in analyzing stage-specific hemodynamics in the embryonic human...
Learning how the human heart develops is essential in cardiology education. It lets us understand a ...
Learning how the human heart develops is essential in cardiology education. It lets us understand a ...
Learning how the human heart develops is essential in cardiology education. It lets us understand a ...
Computational fluid dynamic (CFD) experimentation provides a unique medium for detailed examination ...
Heart development is topographically complex and requires visualization to understand its progressio...
Heart development is topographically complex and requires visualization to understand its progressio...
Heart development is topographically complex and requires visualization to understand its progressio...
The 3D reconstruction technique has dramatically improved understanding of embryogenesis and allowed...
The size and growth patterns of the components of the human embryonic heart have remained largely un...
Data from the Virtual Human Embryo Project, a digital image database of serially sectioned human emb...
Modeling complex organs, such as the human heart, requires a detailed understanding of the geometric...
We present a method to generate quantitative embryonic cardiovascular volumes at extremely high reso...
In this series, three dimensional computer graphics are used to present the anatomical structures in...
In this series, three dimensional computer graphics are used to present the anatomical structures in...
Scaled physical models can be useful in analyzing stage-specific hemodynamics in the embryonic human...
Learning how the human heart develops is essential in cardiology education. It lets us understand a ...
Learning how the human heart develops is essential in cardiology education. It lets us understand a ...
Learning how the human heart develops is essential in cardiology education. It lets us understand a ...
Computational fluid dynamic (CFD) experimentation provides a unique medium for detailed examination ...
Heart development is topographically complex and requires visualization to understand its progressio...
Heart development is topographically complex and requires visualization to understand its progressio...
Heart development is topographically complex and requires visualization to understand its progressio...
The 3D reconstruction technique has dramatically improved understanding of embryogenesis and allowed...
The size and growth patterns of the components of the human embryonic heart have remained largely un...
Data from the Virtual Human Embryo Project, a digital image database of serially sectioned human emb...
Modeling complex organs, such as the human heart, requires a detailed understanding of the geometric...
We present a method to generate quantitative embryonic cardiovascular volumes at extremely high reso...
In this series, three dimensional computer graphics are used to present the anatomical structures in...
In this series, three dimensional computer graphics are used to present the anatomical structures in...