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Frequency-Domain Optical Mammogram

Frequency-Domain Optical Mammogram
Author: Sergio Fantini
Publisher:
Total Pages: 126
Release: 2002
Genre:
ISBN:

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This research project has involved the analysis of a clinical data set of frequency-domain optical mammograms ( -150 patients) to maximize the effectiveness of this breast imaging modality for cancer detection and to guide further improvements of this technique. During the first year, we have computed edge-corrected optical mammograms (N-images) for the whole data set and obtained the corresponding ROC curve. During the second year, we have devised a new approach to tumor oximetry on the basis of spectral data, and we have started developing a second-derivative scheme of image processing. During the third year, we have finalized the second-derivative processing scheme and applied it to the whole set of clinical data. By combining the information provided by the second- derivative optical mammograms at one wavelength, and the oxygenation images computed from data at four wavelengths, we have obtained a new ROC curve that shows a significant improvement upon the ROC curve based on the N-images alone. In summary, we have completed our broad objectives: (1) maximize the clinically useful information extracted from the existing set of optical mammograms; (2) guide further developments of optical mammography by introducing a new approach to tumor oximetry.


Frequency-Domain Optical Mammography

Frequency-Domain Optical Mammography
Author: Serigo Fantini
Publisher:
Total Pages: 64
Release: 2001
Genre:
ISBN:

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This research project involves the analysis of a clinical data set of frequency-domain optical mammogram ( -150 patients) to assess the performance of this approach to breast cancer detection. The analysis of the breast images is complemented by theoretical and experimental studies to characterize the proposed algorithms of image processing. During the second year of this research project, we have significantly refined the perturbation approach that we started developing at the end of the first year to exploit the spectral information of the optical mammogram. The theoretical basis of this method, which is inspired by perturbation theory but is of much more general applicability than perturbation theory, is now well characterized. We have performed optical experiments on tissue-like synthetic samples to experimentally test the effectiveness of our new method for the case of optical inclusions having various sizes, shapes, and optical contrast. Furthermore, we have devised a new approach for the analysis of single-wavelength images that is aimed at identifying the regions of interest for which a spectral examination is performed. We are now in the final stage of characterization of this new scheme of image processing which will then be applied to the whole dataset of optical mammogram.


Frequency-domain Optical Mammography for Detection and Oximetry of Breast Tumors

Frequency-domain Optical Mammography for Detection and Oximetry of Breast Tumors
Author: Erica Leigh Heffer
Publisher:
Total Pages: 404
Release: 2004
Genre: Breast
ISBN:

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Optical breast imaging was investigated as a potential adjunct technique to x-ray mammography for the detection and classification of breast tumors. This technique consists of transillumination of the breast with intensity-modulated light in the 600-- & sim;1000 nm region of the electromagnetic spectrum. Light in this wavelength range can penetrate several centimeters of tissue due to relatively low absorption values (& sim;0.04 cm-1) of breast tissue. Furthermore, data collection at multiple wavelengths within this wavelength range enables spectroscopic evaluation.


Frequency-Domain Optical Mammograph

Frequency-Domain Optical Mammograph
Author:
Publisher:
Total Pages: 31
Release: 2000
Genre:
ISBN:

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This research project involves the analysis of a clinical data set of frequency-domain optical mammograms ( 150 patients) to assess the performance of this approach to breast cancer detection. The analysis of the breast images is complemented by theoretical and experimental studies to characterize the proposed algorithms of image processing. The objective of this research is to identify the strengths and the weaknesses of the current instrument design, and to guide the design of new optical instrumentation for breast cancer detection. During the first year of this research project, we have completed the initial analysis of the optical mammograms at each one of the four wavelengths used (690, 750, 788, 856 nm). The comparison of the single- wavelength optical mammograms with the pathology reports has led to building an ROC (Receiver Operating Characteristic) curve for this method. This ROC curve shows that single wavelength optical mammograms, while potentially sensitive to breast cancer, do not perform well in terms of discrimination of benign and malignant tumors. To exploit the spectral information, we have developed a perturbation approach to analyze the four wavelength images, whose application to a subset of 19 patients has led to promising results. We are currently extending this analysis to a larger subset of data, and we are complementing it with altenative image-processing approaches.


Advances in Optical Biopsy and Optical Mammography

Advances in Optical Biopsy and Optical Mammography
Author: Robert R. Alfano
Publisher:
Total Pages: 228
Release: 1998
Genre: Medical
ISBN: 9781573311250

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Proceedings of a conference by the New York Academy of Sciences held in 1997. The papers explore optical biopsy and optical mammography - new techniques that allow investigators to determine whether a tissue is cancerous without using invasive techniques. The text offers an analysis of the spectrum light emitted from optically excited tissue which allows investigators to detect physical and chemical changes in tissue and determine whether the tissue is normal, benign or cancerous.


Cancer Imaging

Cancer Imaging
Author: M. A. Hayat
Publisher: Academic Press
Total Pages: 655
Release: 2007-10-25
Genre: Medical
ISBN: 0080553656

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With cancer-related deaths projected to rise to 10.3 million people by 2020, the need to prevent, diagnose, and cure cancer is greater than ever. Cancer Imaging presents readers with the most up-to-date imaging instrumentation, general and diagnostic applications for various cancers, with an emphasis on lung and breast carcinomas--the two major worldwide malignancy types. This book discusses the various imaging techniques used to locate and diagnose tumors, including ultrasound, X-ray, color Doppler sonography, PET, CT, PET/CT, MRI, SPECT, diffusion tensor imaging, dynamic infrared imaging, and magnetic resonance spectroscopy. It also details strategies for imaging cancer, emphasizing the importance of the use of this technology for clinical diagnosis. Imaging techniques that predict the malignant potential of cancers, response to chemotherapy and other treatments, recurrence, and prognosis are also detailed. Concentrates on the application of imaging technology to the diagnosis and prognosis of lung and breast carcinomas, the two major worldwide malignancies Addresses the relationship between radiation dose and image quality Discusses the role of molecular imaging in identifying changes for the emergence and progression of cancer at the cellular and/or molecular levels


Biomedical Optics

Biomedical Optics
Author: Lihong V. Wang
Publisher: John Wiley & Sons
Total Pages: 378
Release: 2012-09-26
Genre: Science
ISBN: 0470177004

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This entry-level textbook, covering the area of tissue optics, is based on the lecture notes for a graduate course (Bio-optical Imaging) that has been taught six times by the authors at Texas A&M University. After the fundamentals of photon transport in biological tissues are established, various optical imaging techniques for biological tissues are covered. The imaging modalities include ballistic imaging, quasi-ballistic imaging (optical coherence tomography), diffusion imaging, and ultrasound-aided hybrid imaging. The basic physics and engineering of each imaging technique are emphasized. A solutions manual is available for instructors; to obtain a copy please email the editorial department at [email protected].


Lasers and Current Optical Techniques in Biology

Lasers and Current Optical Techniques in Biology
Author: Giuseppe Palumbo
Publisher: Royal Society of Chemistry
Total Pages: 684
Release: 2007-10-31
Genre: Science
ISBN: 1847551203

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The introduction of innovative light sources, fibre laser sources and light emitting diodes, is opening unexpected perspectives into optical techniques and is promising new exciting applications in the field of biomedicine. Lasers and Current Optical Techniques in Biology aims to provide an overview of light sources, together with an extensive and authoritative description of the optical techniques in bio-medicine. This book is designed to give biomedical researchers a strong feel for the capability of physical approaches, promote new interdisciplinary interests and persuade more practitioners to take advantage of optical techniques. Current developments in a variety of optical techniques, including Near-Infra Red Spectroscopy, and traditional and advanced fluorescence techniques are covered, ranging from those that are becoming common practice to those that need much more experimentation before they can be accepted as real breakthroughs. Further topics include optical coherence tomography and its variations, polarised light imaging and, principle laser and lamp sources- a usually fragmentary topic, often dispersed among specialist publications. The wide range of topics covered make Lasers and Current Optical Techniques in Biology of interest to a diverse range of scientific communities.


Translational Multimodality Optical Imaging

Translational Multimodality Optical Imaging
Author: Fred S. Azar
Publisher: Artech House
Total Pages: 431
Release: 2008
Genre: Medical
ISBN: 1596933089

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Supported with 119 illustrations, this milestone work discusses key optical imaging techniques in self-contained chapters; describes the integration of optical imaging techniques with other modalities like MRI, X-ray imaging, and PET imaging; provides a software platform for multimodal integration; presents cutting-edge computational and data processing techniques that ensure rapid, cost-effective, and precise quantification and characterization of the clinical data; covers advances in photodynamic therapy and molecular imaging, and reviews key clinical studies in optical imaging along with regulatory and business issues.


Alternative Breast Imaging

Alternative Breast Imaging
Author: Keith D. Paulsen
Publisher: Springer Science & Business Media
Total Pages: 259
Release: 2006-01-11
Genre: Computers
ISBN: 0387233644

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Medical imaging has been transformed over the past 30 years by the advent of computerized tomography (CT), magnetic resonance imaging (MRI), and various advances in x-ray and ultrasonic techniques. An enabling force behind this progress has been the (so far) exponentially increasing power of computers, which has made it practical to explore fundamentally new approaches. In particular, what our group terms "model-based" modalities-which produce tissue property images from data using nonlinear, iterative numerical modeling techniques-have become increasingly feasible. Alternative Breast Imaging: Four Model-Based Approaches explores our research on four such modalities, particularly with regard to imaging of the breast: (1) MR elastography (MRE), (2) electrical impedance spectroscopy (EIS), (3) microwave imaging spectroscopy (MIS), and (4) near infrared spectroscopic imaging (NIS). Chapter 1 introduces the present state of breast imaging and discusses how our alternative modalities can contribute to the field. Chapter 2 looks at the computational common ground shared by all four modalities. Chapters 2 through 10 are devoted to the four modalities, with each modality being discussed first in a theory chapter and then in an implementation-and-results chapter. The eleventh and final chapter discusses statistical methods for image analysis in the context of these four alternative imaging modalities. Imaging for the detection of breast cancer is a particularly interesting and relevant application of the four imaging modalities discussed in this book. Breast cancer is an extremely common health problem for women; the National Cancer Institute estimates that one in eight US women will develop breast cancer at least once in her lifetime. Yet the efficacy of the standard (and notoriously uncomfortable) early-detection test, the x-ray mammogram, has been disputed of late, especially for younger women. Conditions are thus ripe for the development of affordable techniques that replace or complement mammography. The breast is both anatomically accessible and small enough that the computing power required to model it, is affordable.