Biomedical Engineering Reference
In-Depth Information
86. Haris K, Efstratiadis SN, Maglaveras N, Katsaggelos AK (1998) Hybrid image segmenta-
tion using watersheds and fast region merging. IEEE Trans Image Process 7:1684-1699
87. Kim JB, Kim HJ (2003) Multiresolution-based watersheds for efficient image segmentation.
Pattern Recogn Lett 24:473-488
88. Frucci M, Ramella G, Sanniti di Baja G (2007) Using resolution pyramids for watershed
image segmentation. Image Vis Comput 25:1021-1031
89. Jung CR, Scharcanski J (2005) Robust watershed segmentation using wavelets. Image Vis
Comput 23:661-669
90. Jung CR (2007) Combining wavelets and watersheds for robust multiscale image segmenta-
tion. Image Vis Comput 25:24-33
91. Hamarneh G, Li X (2009) Watershed segmentation using prior shape and appearance
knowledge. Image Vis Comput 27:59-68
92. Masoumi H, Behrad A, Pourmina MA, Roosta A (2012) Automatic liver segmentation in
MRI images using an iterative watershed algorithm and artificial neural network. Biomed
Signal Process Control 7:429-437
93. Meyer F (1994) Topographic distance and watershed lines. Signal Processing 38:113-125
94. Tarabalka Y, Chanussot J, Benediktsson JA (2010) Segmentation and classification of hyper-
spectral images using watershed transformation. Pattern Recogn 43:2367-2379
95. McInerney T, Terzopoulos D (2000) Deformable models. Academic Press, San Diego
96. Leymarie FF (1990) Tracking and Describing Deformable Objects Using Active Contour
Models [Thesis]
97. Cootes TF, Taylor CJ, Cooper DH, Graham J (1995) Active Shape Models-Their Training
and Application. Comput Vis Image Underst 61:38-59
98. Xue Z, Li SZ, Teoh EK (2003) Bayesian shape model for facial feature extraction and rec-
ognition. Pattern Recogn 36:2819-2833
99. Zheng Z, Jiong J, Chunjiang D, Liu X, Yang J (2008) Facial feature localization based on an
improved active shape model. Inf Sci 178:2215-2223
100. Sukno FM, Guerrero JJ, Frangi AF (2010) Projective active shape models for pose-vari-
ant image analysis of quasi-planar objects: Application to facial analysis. Pattern Recogn
43:835-849
101. Jang D-S, Choi H-I (2000) Active models for tracking moving objects. Pattern Recogn
33:1135-1146
102. Kim W, Lee J-J (2005) Object tracking based on the modular active shape model.
Mechatronics 15:371-402
103. Nuevo J, Bergasa LM, Llorca DF, OcaƱa M (2011) Face tracking with automatic model
construction. Image Vis Comput 29:209-218
104. Liu Z, Shen H, Feng G, Hu D (2012) Tracking objects using shape context matching.
Neurocomputing 83:47-55
105. Hodge AC, Fenster A, Downey DB, Ladak HM (2006) Prostate boundary segmentation
from ultrasound images using 2D active shape models: optimisation and extension to 3D.
Comput Methods Programs Biomed 84:99-113
106. Aung MSH, Goulermas JY, Stanschus S, Hamdy S, Power M (2010) Automated anatomical
demarcation using an active shape model for videofluoroscopic analysis in swallowing. Med
Eng Phys 32:1170-1179
107. Toth R, Tiwari P, Rosen M, Reed G, Kurhanewicz J, Kalyanpur A et al (2011) A magnetic
resonance spectroscopy driven initialization scheme for active shape model based prostate
segmentation. Med Image Anal 15:214-225
108. Edwards GJ, Taylor CJ, Cootes TF (1998) Interpreting face images using active appearance
models. In FG '98: Proceedings of the 3rd international conference on face & gesture recog-
nition. IEEE computer society
109. Cootes TF, Page GJ, Jackson CB, Taylor CJ (1996) Statistical grey-level models for object
location and identification. Image Vis Comput 14:533-540
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