20.7.1.1 Mammography, Texture Based Techniques, Wavelets

Chapter Contents (Back)
Mammograms. Texture. Wavelet. Medical, Applications.

Miller, P.[Peter], Astley, S.[Sue],
Classification of Breast Tissue by Texture Analysis,
IVC(10), No. 5, June 1992, pp. 277-282.
WWW Version. BibRef 9206
Earlier: BMVC91(xx-yy).
PDF Version. 9109
BibRef

Miller, P.[Peter], Astley, S.[Sue],
Automated detection of Breast Asymmetries,
BMVC93(xx-yy).
PDF Version. 9309
BibRef

Sahiner, B., Chan, H.P.[Heang-Ping], Petrick, N., Wei, D.T.[Da-Tong], Helvie, M.A., Adler, D.D., Goodsitt, M.M.,
Classification of mass and normal breast tissue: a convolution neural network classifier with spatial domain and texture images,
MedImg(15), No. 5, October 1996, pp. 598-610.
IEEE Top Reference. 0203
BibRef

Strickland, R.N., Hahn, H.I.[Hee Il],
Wavelet transforms for detecting microcalcifications in mammograms,
MedImg(15), No. 2, April 1996, pp. 218-229.
IEEE Top Reference. 0203
BibRef
Earlier:
Wavelet transform matched filters for the detection and classification of microcalcifications in mammography,
ICIP95(I: 422-425).
IEEE DOI Link 9510
BibRef
Earlier:
Wavelet transforms for detecting microcalcifications in mammography,
ICIP94(I: 402-406).
IEEE DOI Link 9411
BibRef

Kim, J.K., Park, J.M., Song, K.S., Park, H.W.,
Detection of Clustered Microcalcifications on Mammograms Using Surrounding Region Dependence Method and Artificial Neural Network,
VLSIVideo(18), No. 3, April 1998, pp. 251-262. 9806
See also Adaptive Mammographic Image Enhancement Using First Derivative and Local Statistics. BibRef

Lee, Y.J.[Yong Jin], Park, J.M.[Jeong Mi], Park, H.W.[Hyun Wook],
Mammographic mass detection by adaptive thresholding and region growing,
IJIST(11), No. 5, 2000, pp. 340-346.
WWW Version. 0110
BibRef

Kim, J.K.[Jong Kook], Park, H.W.[Hyun Wook],
Statistical textural features for detection of microcalcifications in digitized mammograms,
MedImg(18), No. 3, March 1999, pp. 231-238.
IEEE Top Reference. 0110
BibRef
Earlier:
Surrounding Region Dependence Method For Detection Of Clustered Microcalcifications on Mammograms,
ICIP97(III: 535-538).
IEEE DOI Link 9710
BibRef

Bruce, L.M., Adhami, R.R.,
Classifying mammographic mass shapes using the wavelet transform modulus-maxima method,
MedImg(18), No. 12, December 1999, pp. 1170-1177.
IEEE Top Reference. 0110
BibRef

Mudigonda, N.R., Rangayyan, R., Desautels, J.E.L.,
Gradient and texture analysis for the classification of mammographic masses,
MedImg(19), No. 10, October 2000, pp. 1032-1043.
IEEE Top Reference. 0110
BibRef

Mudigonda, N.R., Rangayyan, R.M., Desautels, J.E.L.,
Detection of breast masses in mammograms by density slicing and texture flow-field analysis,
MedImg(20), No. 12, December 2001, pp. 1215-1227.
IEEE Top Reference. 0201
BibRef

Blot, L.[Lilian], Davis, A.[Anne], Holubinka, M.[Mike], Martí, R.[Robert], Zwiggelaar, R.[Reyer],
Automated Quality Assurance Applied to Mammographic Imaging,
JASP(2002), No. 7, July 2002, pp. 736-745. 0208
BibRef

Marti, R., Zwiggelaar, R., Rubin, C.M.E.,
Tracking Mammographic Structures Over Time,
BMVC01(Poster Session 1).
HTML Version. University of Portsmouth 0110
BibRef

Zwiggelaar, R., Parr, T.C., and Taylor, C.J.,
Finding Orientated Line Patterns in Digital Mammographic Images,
BMVC96(Applications). 9608
University of Manchester BibRef

Zwiggelaar, R.,
Separating Background Texture and Image Structure in Mammograms,
BMVC99(Posters/Exhibition/Demos).
PDF Version. BibRef 9900

Zwiggelaar, R., Astley, S.M., Boggis, C.R.M., Taylor, C.J.,
Linear Structures in Mammographic Images: Detection and Classification,
MedImg(23), No. 9, September 2004, pp. 1077-1086.
IEEE Abstract. 0409
BibRef

Astley, S.M., Taylor, C.J.,
Combining cues for mammographic abnormalities,
BMVC90(xx-yy).
PDF Version. 9009
BibRef

Parr, T.C., Zwiggelaar, R., Taylor, C.J., Astley, S.M., Boggis, C.R.M.,
Detecting Stellate Lesions in Mammograms via Statistical Models,
BMVC97(xx-yy).
HTML Version. 0209
BibRef

Rocha Ferreira, C.B.[Cristiane Bastos], Borges, D.L.[Díbio Leandro],
Analysis of mammogram classification using a wavelet transform decomposition,
PRL(24), No. 7, April 2003, pp. 973-982.
Elsevier DOI Link 0301
BibRef

Lemaur, G., Drouiche, K., DeConinck, J.,
Highly regular wavelets for the detection of clustered microcalcifications in mammograms,
MedImg(22), No. 3, March 2003, pp. 393-401.
IEEE Abstract. 0306
BibRef

Penedo, M., Pearlman, W.A., Tahoces, P.G., Souto, M., Vidal, J.J.,
Region-based wavelet coding methods for digital mammography,
MedImg(22), No. 10, October 2003, pp. 1288-1296.
IEEE Abstract. 0310
BibRef
And: Correction: MedImg(22), No. 12, December 2003, pp. 1575-1575.
IEEE Abstract. 0401
BibRef
Earlier:
Embedded wavelet region-based coding methods applied to digital mammography,
ICIP03(III: 197-200).
IEEE Abstract. 0312
BibRef

Soltanian-Zadeh, H.[Hamid], Rafiee-Rad, F.[Farshid], Pourabdollah-Nejad, S.[Siamak],
Comparison of multiwavelet, wavelet, Haralick, and shape features for microcalcification classification in mammograms,
PR(37), No. 10, October 2004, pp. 1973-1986.
WWW Version. 0409
BibRef

Rashed, E.A.[Essam A.], Ismail, I.A.[Ismail A.], Zaki, S.I.[Sherif I.],
Multiresolution mammogram analysis in multilevel decomposition,
PRL(28), No. 2, 15 January 2007, pp. 286-292.
WWW Version. 0611
Digital mammogram; Discrete wavelets transform; Features extraction; Breast cancer diagnosis BibRef

Grim, J., Somol, P., Haindl, M., Danes, J.,
Computer-Aided Evaluation of Screening Mammograms Based on Local Texture Models,
IP(18), No. 4, April 2009, pp. 765-773.
IEEE DOI Link 0903
BibRef

Haindl, M.[Michal], Mikes, S.[Stanislav],
Unsupervised mammograms segmentation,
ICPR08(1-4).
IEEE DOI Link 0812
BibRef


Dellepiane, S.G.[Silvana G.], Minetti, I.[Irene], Dellepiane, S.[Sara],
A Hierarchical Classification Method for Mammographic Lesions Using Wavelet Transform and Spatial Features,
ICCVG10(I: 324-332).
Springer DOI Link 1009
BibRef

Jasionowska, M.[Magdalena], Przelaskowski, A.[Artur], Józwiak, R.[Rafal],
Characteristics of Architectural Distortions in Mammograms: Extraction of Texture Orientation with Gabor Filters,
ICCVG10(I: 420-430).
Springer DOI Link 1009
BibRef

Kostopoulos, S.[Spiros], Cavouras, D.[Dionisis], Daskalakis, A.[Antonis], Kalatzis, I.[Ioannis], Bougioukos, P.[Panagiotis], Kagadis, G.C.[George C.], Ravazoula, P.[Panagiota], Nikiforidis, G.[George],
Assessing Estrogen Receptors' Status by Texture Analysis of Breast Tissue Specimens and Pattern Recognition Methods,
CAIP07(221-228).
Springer DOI Link 0708
BibRef

Georgsson, F.[Fredrik], Jansson, S.[Stefan], Olsén, C.[Christina],
Fractal Analysis of Mammograms,
SCIA07(92-101).
Springer DOI Link 0706
BibRef

Kim, H.J.[Hyung-Jun], Kim, W.H.[Won-Ha],
Automatic Detection of Spiculated Masses Using Fractal Analysis in Digital Mammography,
CAIP05(256).
Springer DOI Link 0509
BibRef

Chen, Y.[Yuan], Chang, C.I.[Chein-I],
A new application of texture unit coding to mass classification for mammograms,
ICIP04(V: 3335-3338).
IEEE DOI Link 0505
BibRef

Yuan, X.[Xin], Shi, P.C.[Peng-Cheng],
Microcalcification detection based on localized texture comparison,
ICIP04(V: 2953-2956).
IEEE DOI Link 0505
BibRef

Tweed, T., Miguet, S.,
Automatic detection of regions of interest in mammographies based on a combined analysis of texture and histogram,
ICPR02(II: 448-452).
IEEE DOI Link 0211
BibRef

Sakellaropoulos, P., Costaridou, L., Panayiotakis, G.,
Integrating Wavelet-based Mammographic Image Visualisation on a Web Browser,
ICIP01(II: 873-876).
IEEE Abstract. 0108
BibRef

Bovis, K., Singh, S.,
Detection of Masses in Mammograms Using Texture Features,
ICPR00(Vol II: 267-270).
IEEE DOI Link 0009
BibRef

Yoshida, H., Zhang, W.[Wei], Cai, W.D.[Wei-Dong], Doi, K., Nishikawa, R.M., Giger, M.L.,
Optimizing wavelet transform based on supervised learning for detection of microcalcifications in digital mammograms,
ICIP95(III: 152-155).
IEEE DOI Link 9510
BibRef

Chapter on Medical Applications, CAT, MRI, Ultrasound, Heart Models, Brain Models continues in
Mammograms, Image Enhancement, Noise Suppression .


Last update:May 16, 2012 at 20:31:07