Image Processing Reference
In-Depth Information
11. Gasteiger, R., Neugebauer, M., Beuing, O., Preim, B.: The FLOWLENS: A Focus-and-Context
Visualization Approach for Exploration of Blood Flow in Cerebral Aneurysms. IEEE Trans.
Vis. Comput. Graph. 17 , 2183-2192 (2011)
12. Gasteiger, R., Neugebauer,M., Kubisch, C., Preim, B.: Adapted surface visualization of cerebral
aneurysms with embedded blood flow information. In: Eurographics Workshop on Visual
Computing for Biology and Medicine (EG VCBM), pp. 25-32 (2010)
13. Gatehouse, P., Keegan, J., Crowe, L., Masood, S., Mohiaddin, R., Kreitner, K.F., Firmin, D.:
Applications of phase-contrast flow and velocity imaging in cardiovascular MRI. Eur. Radiol.
15 , 2172-2184 (2005)
14. Gatehouse, P.D., Rolf, M.P., Graves, M.J., Hofman, M.B., Totman, J.J., Werner, B., Quest, R.A.,
Liu, Y., Spiczak von, J., Dieringer, M., Firmin, D.N., Rossum van, A., Lombardi, M., Schwitter,
J., Schulz-Menger, J., Kilner, P.J.: Flow measurement by cardiovascular magnetic resonance:
a multi-centre multi-vendor study of background phase offset errors that can compromise the
accuracy of derived regurgitant or shunt flowmeasurements. J. Cardiovasc. Magn. Reson. 12 (5)
(2010)
15. Greil, G., Geva, T., Maier, S.E., Powell, A.J.: Effect of acquisition parameters on the accuracy
of velocity encoded cine magnetic resonance imaging blood flowmeasurements. Magn. Reson.
Imaging 15 (1), 47-54 (2002). doi: 10.1002/jmri.10029
16. Hanson, A.J., Wernert, E.A.: Constrained 3d navigation with 2d controllers. In: Proceedings of
the 8th Conference on Visualization '97, VIS '97, pp. 175-182. IEEE Computer Society Press
(1997)
17. Huo, Y., Kaimovitz, B., Lanir, Y., Wischgoll, T., Hoffman, J.I., Kassab, G.S.: Biophysical
model of spatial heterogeneity of myocardial flow. Biophys. J. 96 (10), 4035-4043 (2009)
18. Kanitsar, A., Fleischmann, D., Wegenkittl, R., Felkl, P., Gröller, E.: CPR: curved planar refor-
mation. pp. 37-44. IEEE Computer Society (2002)
19. Kirbas, C., Quek, F.: A review of vessel extraction techniques and algorithms. ACM Comput.
Surv. 36 , 81-121 (2004)
20. Krishnan, H., Garth, C., Guhring, J., Gulsun, M., Greiser, A., Joy, K.: Analysis of time-
dependent flow-sensitive PC-MRI data. IEEE Trans. Vis. Comput. Graph. 99 , 1 (2011). doi: 10.
1109/TVCG.2011.80
21. Kuhn, A., Lehmann, D.J., Gaststeiger, R., Neugebauer, M., Preim, B., Theisel, H.: A clustering-
based visualization technique to emphasize meaningful regions of vector fields. In: Proceedings
of Vision, Modeling, and Visualization (VMV 2011), pp. 191-198. Eurographics Assosciation
(2011)
22. Langley, J., Zhao, Q.: Unwrapping magnetic resonance phase maps with chebyshev polyno-
mials. J. Magn. Reson. Imaging 27 (9), 1293-1301 (2009)
23. Laramee, R.S., Hauser, H., Doleisch, H., Vrolijk, B., Post, F.H., Weiskopf, D.: The state of the
art in flow visualization: dense and texture-based techniques. Comput. Graph. Forum 23 (2),
203-221 (2004)
24. Li, H., Chen, W., Shen, I.F.: Segmentation of discrete vector fields. IEEE Trans. Vis. Comput.
Graph. 12 , 289-300 (2006). http://doi.ieeecomputersociety.org/10.1109/TVCG.2006.54
25. Lorensen, W.E., Cline, H.E.: Marching cubes: a high resolution 3d surface construction algo-
rithm. In: Proceedings of the 14th Annual Conference on Computer Graphics and Interactive
Techniques. SIGGRAPH '87, pp. 163-169. ACM, New York, NY, USA (1987)
26. Lotz, J., Döker, R., Noeske, R., Schüttert, M., Felix, R., Galanski, M., Gutberlet, M., Meyer,
G.P.: In vitro validation of phase-contrast flow measurements at 3 T in comparison to 1.5 T:
precision, accuracy, and signal-to-noise ratios. J. Magn. Reson. Imaging 21 (5), 604-610 (2005)
27. Markl, M., Chan, F.P., Alley, M.T.: L. Wedding, K., Draney, M.T., Elkins, C.J., Parker, D.W.,
Taylor, C.A., Herfkens, R.J., Pelc, N.J.: Time resolved three dimensional phase contrast MRI.
Magn. Reson. Imaging 506 , 64 (2003)
28. Morbiducci, U., Ponzini, R., Rizzo, G., Cadioli, M., Esposito, A., De Cobelli, F., Del Maschio,
A., Montevecchi, F., Redaelli, A.: In vivo: quantification of helical blood flow in human aorta
by time-resolved three-dimensional cine phase contrast magnetic resonance imaging. Ann.
Biomed. Eng. 37 , 516-531 (2009)
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