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Integrated Systems and Technologies

Investigation of Optical Coherence Microelastography as a Method to Visualize Cancers in Human Breast Tissue

Brendan F. Kennedy, Robert A. McLaughlin, Kelsey M. Kennedy, Lixin Chin, Philip Wijesinghe, Andrea Curatolo, Alan Tien, Maxine Ronald, Bruce Latham, Christobel M. Saunders and David D. Sampson
Brendan F. Kennedy
1Optical+Biomedical Engineering Laboratory, School of Electrical, Electronic and Computer Engineering, The University of Western Australia, Crawley, Western Australia, Australia.
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  • For correspondence: brendan.kennedy@uwa.edu.au
Robert A. McLaughlin
1Optical+Biomedical Engineering Laboratory, School of Electrical, Electronic and Computer Engineering, The University of Western Australia, Crawley, Western Australia, Australia.
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Kelsey M. Kennedy
1Optical+Biomedical Engineering Laboratory, School of Electrical, Electronic and Computer Engineering, The University of Western Australia, Crawley, Western Australia, Australia.
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Lixin Chin
1Optical+Biomedical Engineering Laboratory, School of Electrical, Electronic and Computer Engineering, The University of Western Australia, Crawley, Western Australia, Australia.
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Philip Wijesinghe
1Optical+Biomedical Engineering Laboratory, School of Electrical, Electronic and Computer Engineering, The University of Western Australia, Crawley, Western Australia, Australia.
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Andrea Curatolo
1Optical+Biomedical Engineering Laboratory, School of Electrical, Electronic and Computer Engineering, The University of Western Australia, Crawley, Western Australia, Australia.
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Alan Tien
2School of Surgery, The University of Western Australia, Crawley, Western Australia, Australia.
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Maxine Ronald
3Breast Clinic, Royal Perth Hospital, Perth, Western Australia, Australia.
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Bruce Latham
4PathWest, Perth, Western Australia, Australia.
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Christobel M. Saunders
2School of Surgery, The University of Western Australia, Crawley, Western Australia, Australia.
3Breast Clinic, Royal Perth Hospital, Perth, Western Australia, Australia.
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David D. Sampson
1Optical+Biomedical Engineering Laboratory, School of Electrical, Electronic and Computer Engineering, The University of Western Australia, Crawley, Western Australia, Australia.
5Centre for Microscopy, Characterization and Analysis, The University of Western Australia, Crawley, Western Australia, Australia.
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DOI: 10.1158/0008-5472.CAN-14-3694 Published August 2015
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Abstract

An accurate intraoperative identification of malignant tissue is a challenge in the surgical management of breast cancer. Imaging techniques that help address this challenge could contribute to more complete and accurate tumor excision, and thereby help reduce the current high reexcision rates without resorting to the removal of excess healthy tissue. Optical coherence microelastography (OCME) is a three-dimensional, high-resolution imaging technique that is sensitive to microscale variations of the mechanical properties of tissue. As the tumor modifies the mechanical properties of breast tissue, OCME has the potential to identify, on the microscale, involved regions of fresh, unstained tissue. OCME is based on the use of optical coherence tomography (OCT) to measure tissue deformation in response to applied mechanical compression. In this feasibility study on 58 ex vivo samples from patients undergoing mastectomy or wide local excision, we demonstrate the performance of OCME as a means to visualize tissue microarchitecture in benign and malignant human breast tissues. Through a comparison with corresponding histology and OCT images, OCME is shown to enable ready visualization of features such as ducts, lobules, microcysts, blood vessels, and arterioles and to identify invasive tumor through distinctive patterns in OCME images, often with enhanced contrast compared with OCT. These results lay the foundation for future intraoperative studies. Cancer Res; 75(16); 3236–45. ©2015 AACR.

Footnotes

  • Note: Supplementary data for this article are available at Cancer Research Online (http://cancerres.aacrjournals.org/).

  • Received December 16, 2014.
  • Revision received June 3, 2015.
  • Accepted June 14, 2015.
  • ©2015 American Association for Cancer Research.
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Cancer Research: 75 (16)
August 2015
Volume 75, Issue 16
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Investigation of Optical Coherence Microelastography as a Method to Visualize Cancers in Human Breast Tissue
Brendan F. Kennedy, Robert A. McLaughlin, Kelsey M. Kennedy, Lixin Chin, Philip Wijesinghe, Andrea Curatolo, Alan Tien, Maxine Ronald, Bruce Latham, Christobel M. Saunders and David D. Sampson
Cancer Res August 15 2015 (75) (16) 3236-3245; DOI: 10.1158/0008-5472.CAN-14-3694

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Investigation of Optical Coherence Microelastography as a Method to Visualize Cancers in Human Breast Tissue
Brendan F. Kennedy, Robert A. McLaughlin, Kelsey M. Kennedy, Lixin Chin, Philip Wijesinghe, Andrea Curatolo, Alan Tien, Maxine Ronald, Bruce Latham, Christobel M. Saunders and David D. Sampson
Cancer Res August 15 2015 (75) (16) 3236-3245; DOI: 10.1158/0008-5472.CAN-14-3694
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