By Jasjit Suri, S. Vinitha Sree, Kwan-Hoong Ng
This publication provides the demonstrated and at the moment researched diagnostic and healing imaging options used for breast melanoma. part I is a overview of the rules, purposes, and up to date advances of breast imaging modalities. part II makes a speciality of breast pathologies and provides using breast melanoma subgross morphology parameters. part III covers mammography. part IV specializes in CAD thoughts utilized in breast melanoma detection. part V is devoted to breast ultrasound, and part VI discusses the position of magnetic resonance imaging in breast imaging. Thermal imaging in breast melanoma is the subject of part VII, and part VIII concludes with chapters on breast melanoma therapy.
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Additional resources for Diagnostic and Therapeutic Applications of Breast Imaging
Itoh, E. Ueno, E. Tohno, H. Kamma, H. Takahashi, T. Shiina, M. Yamakawa, and T. Matsumura, “Breast disease: clinical application of US elastography for diagnosis,” Radiology 239(2), 341–350 (2006). 31. S. Garra, “Imaging and estimation of tissue elasticity by ultrasound,” Ultrasound Q 23(4), 255–228 (2007). 32. G. Scaperrotta, C. Ferranti, C. Costa, L. Mariani, M. Marchesini, L. Suman, C. Folini, and S. Bergonzi, “Role of sonoelastography in non-palpable breast lesions,” Eur. Radiol. 18(11), 2381–2389 (2008).
Ollivier, F. Thibault, C. El Khoury, and S. Neuenschwander, “How to optimize breast ultrasound,” Eur. J. Radiol. 69(1), 6–13 (2009). R. Hendrick, Breast MRI: Fundamentals and Technical Aspects, Springer, New York (2007). H. Heywang-Köbrunner, P. Viehweg, A. Heinig, and C. Küchler, “Contrast-enhanced MRI of the breast: accuracy, value, controversies, solutions,” Eur. J. Radiol. 24(2), 94–108 (1997). F. F. F. Caduff, G. Kacl, E. P. Krestin, “Improved diagnostic accuracy in dynamic contrast enhanced MRI of the breast by combined quantitative and qualitative analysis,” Brit.
Either the total impedance or its resistive and reactive components (or sometimes only the change in impedance) contains enough information to be correlated to the physiological event. The two most popular noninvasive in vivo techniques for impedance measurements are electrical impedance tomography (EIT) and electrical impedance scanning (EIS). 1 Principle In EIT, a large number of impedance measurements are made from electrodes placed on the breast surface. These measurements are reconstructed using a computer to produce tomographic 2D or 3D images of the examined surface.