Computer Vision, Virtual Reality and Robotics in Medicine: First International Conference, CVRMed '95, Nice, France, April 3 - 6, 1995. ProceedingsNicholas Ayache Springer Science & Business Media, 20 mars 1995 - 574 pages This book contains the written contributions to the program of the First In ternational Conference on Computer Vision, Virtual Reality, and Robotics in Medicine (CVRMed'95) held in Nice during the period April 3-6, 1995. The articles are regrouped into a number of thematic sessions which cover the three major topics of the field: medical image understanding, registration problems in medicine, and therapy planning, simulation and control. The objective of the conference is not only to present the most innovative and promising research work but also to highlight research trends and to foster dialogues and debates among participants. This event was decided after a preliminary successful symposium organized in Stanford in March 1994 by E. Grimson (MIT), T. Kanade (CMU), R. Kikinis and W. Wells (Chair) (both at Harvard Medical School and Brigham and Women's Hospital), and myself (INRIA). We received 92 submitted full papers, and each one was evaluated by at least three members of the Program Committee, with the help of auxiliary reviewers. Based on these evaluations, a representative subset of the Program Committee met to select 19 long papers, 29 regular papers, and 27 posters. The geographical repartition of the contributions is the following: 24 from European countries (other than France), 23 contributions from France, 20 from Northern America (USA and Canada), and 8 from Asia (Japan and Singapore). |
Table des matières
II | 3 |
V | 13 |
VI | 23 |
VII | 30 |
VIII | 40 |
IX | 47 |
XI | 57 |
XII | 59 |
XLVIII | 295 |
XLIX | 302 |
L | 309 |
LI | 319 |
LII | 327 |
LIII | 339 |
LIV | 341 |
LV | 351 |
XIII | 70 |
XIV | 77 |
XV | 84 |
XVI | 92 |
XVII | 103 |
XVIII | 105 |
XIX | 115 |
XX | 123 |
XXI | 131 |
XXII | 138 |
XXIII | 151 |
XXIV | 153 |
XXV | 163 |
XXVI | 170 |
XXVII | 177 |
XXVIII | 184 |
XXIX | 193 |
XXX | 195 |
XXXI | 205 |
XXXII | 212 |
XXXIII | 219 |
XXXIV | 229 |
XXXV | 231 |
XXXVI | 237 |
XXXVII | 242 |
XXXVIII | 247 |
XXXIX | 252 |
XL | 257 |
XLI | 262 |
XLII | 267 |
XLIII | 272 |
XLIV | 277 |
XLV | 282 |
XLVI | 287 |
XLVII | 293 |
LVI | 358 |
LVII | 365 |
LVIII | 372 |
LIX | 383 |
LX | 385 |
LXI | 392 |
LXII | 399 |
LXIV | 406 |
LXV | 413 |
LXVI | 420 |
LXVII | 427 |
LXVIII | 429 |
LXIX | 434 |
LXX | 439 |
LXXI | 444 |
LXXII | 449 |
LXXIV | 455 |
LXXV | 460 |
LXXVII | 465 |
LXXX | 471 |
LXXXI | 476 |
LXXXII | 481 |
LXXXIII | 487 |
LXXXIV | 493 |
LXXXV | 495 |
LXXXVI | 506 |
LXXXVII | 513 |
LXXXVIII | 523 |
LXXXIX | 533 |
XC | 535 |
XCI | 542 |
XCII | 549 |
XCIII | 555 |
565 | |
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Expressions et termes fréquents
3D atlas active contour active cube algorithm analysis anatomical application approach approximation atlas automatic B-spline beam Biomedical bone boundary brain bronchus calibration camera clinical Computer Vision contour coordinates corresponding curvature curve data set defined deformation described detection display dose edge edge detection error estimate extracted feature Figure filter frame function Gabor filters geometric global gradient Graphics IEEE image processing initial INRIA intensity interactive intravascular ultrasound iteration laser leukocyte linear matching medical images mesh method minimization motion nodes normal object obtained operator optical flow optimal overlay parameters patient performed pixel points position problem Proc procedure projection radiosurgery reconstruction regions registration robot rotation scale scale space segmentation shape simulation slice snake space spatial SPIE stereo structures superquadrics surface surgeon surgery surgical techniques three-dimensional tissue tracking transformation tumor ultrasound vector vessel visualization volume rendering voxel X-ray