MEDVIS 3D

Direct 3D rendering of different intensity volumes generated from medical image data

MEDVIS 3D

Computation of vascular blood flow and coupled vessel wall deformation

MEDVIS 3D

Computation of vascular blood flow and coupled vessel wall deformation

 

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MEDVIS 3D, a system for visualization, segmentation of medical image data and simulation of blood flow through 3D structures, is the result of a research project of the RISC Software GmbH - Research Unit Medical-Informatics, together with the Johannes Kepler Universität Linz, the Kepler Universitätsklinikum NeuromedCampus Linz (formerly OÖ Gesundheits- und Spitals AG) and the Kepler Universitätsklinikum MedCampus Linz (formerly General Hospital Linz). The project goal is the development of a clinical software tool for 3D visualization, measurement und simulation of biological structures on the basis of medical imaging data from X-ray angiography, MRT and CT. We have accomplished to develop a software tool that is able to provide all means to simulate the blood flow through intracranial aneurysms. The software is able to reconstruct the 3D blood volume, generate a simulation mesh and run a complete CFD/CSD simulation of the blood flow with fluid-structure interaction using state-of-the-art CPU/GPU hardware acceleration technologies. The (intermediate) results can be directly visualized in our software. We now offer a free version of MEDVIS 3D that is capable of reading arbitrary DICOM images and visualize the contained volume information in 3D.

New MEDVIS 3D 2013.2.1.1 released Get Free MEDVIS 3D DICOM Viewer
Download MEDVIS 3D 2013 now Download MEDVIS 3D Viewer now
   
MEDVIS 3D Tutorial available Tutorial Demo Data Set
Download MEDVIS 3D Tutorial now Download MEDVIS 3D Tuturial Dataset now

ENDOPREDICTOR
is the latest research project in the field of vascular blood flow simulation. The project is funded in the FFG program "Innovatives OÖ 2020" and is carried out in the consortium of RISC Software GmbH and Kepler Universitätsklinikum GmbH, AKH Linz. MATTES MEDICAL Imaging is participating as third-party contributor bringing know-how in the field of aortic stent segmentation and migration detection.
 
VIRTUAL ANEURYSM is the name of a research project finished in 2015 that is based on the technology of MEDVIS 3D. The goal of this project is to develop a haptic simulator for clipping surgery of intracranial aneurysms. The project is funded in the FFG BRIDGE program and is carried out in the consortium of RISC Software GmbH, Landesnervenklinik Wagner-Jauregg, AKH Linz and AESCULAP AG. RISC Software and OSSIM Technologies have signed a bilateral sales cooperation for global commercialization of the "Virtual Aneurysm" simulator. A first version is planned to be available by the end of 2017. Read more.
 
The first consortium was initiated by a MODSIM - Mathematical Computation research project, which was an initiative of the Austrian Research Promotion Agency (FFG) and the Ministry of Traffic, Innovation and Technology (BM:VIT). The project is partly funded by the government of Upper Austria in the "Innovatives Oberösterreich 2010plus" initiative. Since 2009 we are working on the development of a simulation model of blood flow through intracranial vessels and aneurysms. Our goal is to calculate velocity, pressure and stresses of blood lumen and vessel wall in order to provide quantitative measures to support clinical diagnostics and to estimate rupture risks of intracranial aneurysms.
 
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