svMorph: Interactive Geometry-Editing Tools for Virtual Patient-Specific Vascular Anatomies

Author:

Pham Jonathan1,Wyetzner Sofia2,Pfaller Martin R.3,Parker David W.4,James Doug L.2,Marsden Alison L.5

Affiliation:

1. Department of Mechanical Engineering, Stanford University , Stanford, CA 94305

2. Department of Computer Science, Stanford University , Stanford, CA 94305

3. Department of Pediatrics, Stanford University , Stanford, CA 94305

4. Stanford Research Computing Center, Stanford University , Stanford, CA 94305

5. Department of Bioengineering, Department of Pediatrics, Stanford University , Stanford, CA 94305

Abstract

Abstract We propose svMorph, a framework for interactive virtual sculpting of patient-specific vascular anatomic models. Our framework includes three tools for the creation of tortuosity, aneurysms, and stenoses in tubular vascular geometries. These shape edits are performed via geometric operations on the surface mesh and vessel centerline curves of the input model. The tortuosity tool also uses the physics-based Oriented Particles method, coupled with linear blend skinning, to achieve smooth, elastic-like deformations. Our tools can be applied separately or in combination to produce simulation-suitable morphed models. They are also compatible with popular vascular modeling software, such as simvascular. To illustrate our tools, we morph several image-based, patient-specific models to create a range of shape changes and simulate the resulting hemodynamics via three-dimensional, computational fluid dynamics. We also demonstrate the ability to quickly estimate the hemodynamic effects of the shape changes via the automated generation of associated zero-dimensional lumped-parameter models.

Funder

National Institute of Biomedical Imaging and Bioengineering

U.S. National Library of Medicine

Publisher

ASME International

Subject

Physiology (medical),Biomedical Engineering

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