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Simplifying the assessment of human breast cancer by mapping a micro-scale heterogeneity index in optical coherence elastography
Journal article

Simplifying the assessment of human breast cancer by mapping a micro-scale heterogeneity index in optical coherence elastography

L. Chin, B. Latham, C.M. Saunders, David Sampson and B.F. Kennedy
Journal of Biophotonics, Vol.10(5), pp.690-700
2017

Abstract

breast cancer mechanical heterogeneity optical coherence elastography optical coherence tomography signal processing tumor margins visualization Atomic force microscopy Diseases Flow visualization Optical tomography Signal processing Surgery Tissue Tomography Tumors Breast Cancer Breast conserving surgery Human breast tissue Mechanical heterogeneity Micro-scale heterogeneity Optical coherence elastography Rapid identification Ultrasound elastography Medical imaging breast breast tumor diagnostic imaging elastography female human optical coherence tomography Breast Breast Neoplasms Elasticity Imaging Techniques Female Humans Tomography Optical Coherence

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