DocumentCode
1762988
Title
A Review of Optical Coherence Elastography: Fundamentals, Techniques and Prospects
Author
Kennedy, Brendan Francis ; Kennedy, Kelsey Marie ; Sampson, D.D.
Author_Institution
Opt.+Biomed. Eng. Lab., Univ. of Western Australia, Crawley, WA, Australia
Volume
20
Issue
2
fYear
2014
fDate
March-April 2014
Firstpage
272
Lastpage
288
Abstract
In optical coherence elastography, images are formed by mapping a mechanical property of tissue. Such images, known as elastograms, are formed on the microscale, intermediate between that of cells and whole organs. Optical coherence elastography holds great promise for detecting and monitoring the altered mechanical properties that accompany many clinical conditions and pathologies, particularly in cancer, cardiovascular disease and eye disease. In this review, we first consider how the mechanical properties of tissue are linked with tissue function and pathology. We then describe currently prominent optical coherence elastography techniques, with emphasis on the methods of mechanical loading and displacement estimation. We highlight the sensitivity to microstrain deformations at tens of micrometer resolution. Throughout, optical coherence elastography is considered in the context of other elastography methods, mainly ultrasound elastography and magnetic resonance elastography. This context serves to highlight its advantages, early stage of development of applications, and strong prospects for future impact.
Keywords
biomechanics; diseases; optical tomography; reviews; cancer; cardiovascular disease; elastograms; eye disease; optical coherence elastography; pathology; tissue function; tissue mechanical property; Elasticity; Loading; Optical imaging; Strain; Surface acoustic waves; Ultrasonic imaging; Tissue mechanics; elastography; mechanical properties; optical coherence elastography; optical coherence tomography;
fLanguage
English
Journal_Title
Selected Topics in Quantum Electronics, IEEE Journal of
Publisher
ieee
ISSN
1077-260X
Type
jour
DOI
10.1109/JSTQE.2013.2291445
Filename
6670078
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