DocumentCode :
963664
Title :
Interactive Blood Damage Analysis for Ventricular Assist Devices
Author :
Hentschel, Bernd ; Tedjo, Irene ; Probst, Markus ; Wolter, Marc ; Behr, Marek ; Bischof, Christian ; Kuhlen, Torsten
Author_Institution :
Virtual Reality Group, RWTH Aachen Univ., Aachen
Volume :
14
Issue :
6
fYear :
2008
Firstpage :
1515
Lastpage :
1522
Abstract :
Ventricular Assist Devices (VADs) support the heart in its vital task of maintaining circulation in the human body when the heart alone is not able to maintain a sufficient flow rate due to illness or degenerative diseases. However, the engineering of these devices is a highly demanding task. Advanced modeling methods and computer simulations allow the investigation of the fluid flow inside such a device and in particular of potential blood damage. In this paper we present a set of visualization methods which have been designed to specifically support the analysis of a tensor-based blood damage prediction model. This model is based on the tracing of particles through the VAD, for each of which the cumulative blood damage can be computed. The model´s tensor output approximates a single blood cell´s deformation in the flow field. The tensor and derived scalar data are subsequently visualized using techniques based on icons, particle visualization, and function plotting. All these techniques are accessible through a Virtual Reality-based user interface, which features not only stereoscopic rendering but also natural interaction with the complex three-dimensional data. To illustrate the effectiveness of these visualization methods, we present the results of an analysis session that was performed by domain experts for a specific data set for the MicroMed DeBakey VAD.
Keywords :
blood vessels; cardiovascular system; cellular biophysics; data visualisation; medical computing; orthotics; tensors; user interfaces; virtual reality; blood cell deformation; degenerative disease; fluid flow; function plotting; illness; interactive blood damage analysis; particle tracing; particle visualization; scalar data visualization method; tensor-based blood damage prediction model; ventricular assist device; virtual reality-based user interface; Biological system modeling; Blood; Computer simulation; Data visualization; Degenerative diseases; Fluid flow; Heart; Humans; Maintenance engineering; Tensile stress; Index Terms— Tensor visualization; blood damage; time-dependent data; ventricular assist device; virtual reality; Computer Graphics; Computer Simulation; Equipment Design; Equipment Failure Analysis; Erythrocytes; Heart-Assist Devices; Hemolysis; Humans; Models, Cardiovascular; User-Computer Interface;
fLanguage :
English
Journal_Title :
Visualization and Computer Graphics, IEEE Transactions on
Publisher :
ieee
ISSN :
1077-2626
Type :
jour
DOI :
10.1109/TVCG.2008.142
Filename :
4658170
Link To Document :
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