By Leon Axel (auth.), Isabelle E. Magnin, Johan Montagnat, Patrick Clarysse, Jukka Nenonen, Toivo Katila (eds.)
The ?rst foreign convention on sensible Imaging and Modeling of the 1 center (FIMH) was once held in Helsinki, Finland, in November 2001, due to the strongscienti?ccollaborationbetweenFranceandFinland. Thiseventwasa?rst try and federate the guts imaging neighborhood and to inspire collabo- tion among scientists in sign and snapshot processing, utilized arithmetic and physics, biomedical engineering and machine technological know-how, and specialists in card- logy, radiology, biology, and body structure, in Europe and past. The convention has encountered significant good fortune. the exceptional learn works pres- ted have established a truly energetic learn ?eld with complicated modeling and photo research difficulties to be solved. one of many results used to be the targeted factor of the scientific snapshot research magazine in response to a variety of the conference’s top papers, to seem within the moment half 2003. The FIMH 2001 assembly used to be the start line of a dialogue for federating the ecu examine e?ort in cardiac imaging, middle modeling, and cardiac snapshot research. It used to be very profitable, and a wide coalition used to be created round 2 the e-Heart suggestion for a community of Excellence within the eu 6th Fra- paintings application. The e-Heart community has already accumulated approximately 2 hundred researchers from a hundred institutes. A undertaking idea has been submitted to the eu Union. It was once determined within the ?rst assembly to prepare a standard biennial conference.
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Extra resources for Functional Imaging and Modeling of the Heart: Second International Workshop, FIMH 2003, Lyon, France, June 5–6, 2003, Proceedings
Frangi1 , D. A. J. Niessen4 1 4 Division of Biomedical Engineering, Aragon Institute of Engineering Research University of Zaragoza. Zaragoza, Spain 2 Visual Information Processing Group, Department of Computing Imperial College of Science, Technology and Medicine, London, UK 3 Computational Imaging Science Group, Division of Radiological Sciences Guy’s Hospital, King’s College London, London, UK Image Sciences Institute, University Medical Center Utrecht, The Netherlands Abstract. This paper presents a method for the generation of landmarks in three-dimensional shapes and the construction of the corresponding 3-D statistical shape models.
The path is normally terminated when the particle is surrounded locally by a small domain of zero vectors. In our application, it is also necessary to obtain a backward trace from each seed position by following the opposite direction of the vector ﬁeld F v (p), as we have no prior knowledge about the end points of each path. Each particle movement is represented as a distance ﬁeld of a line segment, and the union of all sections of a path results in an approximation of a ﬁeld representation of a ﬁbre bundle.
For each atlas, and both registration measures used in the atlas building procedure, we show the evolution of both metrics as a function of the iteration number. 99). Fig. 2. Atlas construction and landmarking. Surface rendering of the atlas with the wire frame joining the extracted landmarks. F. Frangi et al. 80 1 2 3 4 5 6 7 8 9 10 n 1 2 3 4 5 6 7 8 9 Fig. 3. Convergence of the atlas construction algorithm. The κ statistic and the label consistency similarity measures between two consecutive atlases as a function of the iteration number n.
Functional Imaging and Modeling of the Heart: Second International Workshop, FIMH 2003, Lyon, France, June 5–6, 2003, Proceedings by Leon Axel (auth.), Isabelle E. Magnin, Johan Montagnat, Patrick Clarysse, Jukka Nenonen, Toivo Katila (eds.)