Noninvasive assessment of breast cancer risk using time-resolved diffuse optical spectroscopy

Breast density is a recognized strong and independent risk factor for breast cancer. We propose the use of time-resolved transmittance spectroscopy to estimate breast tissue density and potentially provide even more direct information on breast cancer risk. Time-resolved optical mammography at seven...

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Published inJournal of Biomedical Optics Vol. 15; no. 6; p. 060501
Main Authors Taroni, Paola, Pifferi, Antonio, Quarto, Giovanna, Spinelli, Lorenzo, Torricelli, Alessandro, Abbate, Francesca, Villa, Anna M, Balestreri, Nicola, Menna, Simona, Cassano, Enrico, Cubeddu, Rinaldo
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Published United States 01.11.2010
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Abstract Breast density is a recognized strong and independent risk factor for breast cancer. We propose the use of time-resolved transmittance spectroscopy to estimate breast tissue density and potentially provide even more direct information on breast cancer risk. Time-resolved optical mammography at seven wavelengths (635 to 1060 nm) is performed on 49 subjects. Average information on breast tissue of each subject is obtained on oxy- and deoxyhemoglobin, water, lipids, and collagen content, as well as scattering amplitude and power. All parameters, except for blood volume and oxygenation, correlate with mammographic breast density, even if not to the same extent. A synthetic optical index proves to be quite effective in separating different breast density categories. Finally, the estimate of collagen content as a more direct means for the assessment of breast cancer risk is discussed.
AbstractList Breast density is a recognized strong and independent risk factor for breast cancer. We propose the use of time-resolved transmittance spectroscopy to estimate breast tissue density and potentially provide even more direct information on breast cancer risk. Time-resolved optical mammography at seven wavelengths (635 to 1060 nm) is performed on 49 subjects. Average information on breast tissue of each subject is obtained on oxy-and deoxyhemoglobin, water, lipids, and collagen content, as well as scattering amplitude and power. All parameters, except for blood volume and oxygenation, correlate with mammographic breast density, even if not to the same extent. A synthetic optical index proves to be quite effective in separating different breast density categories. Finally, the estimate of collagen content as a more direct means for the assessment of breast cancer risk is discussed.
Breast density is a recognized strong and independent risk factor for breast cancer. We propose the use of time-resolved transmittance spectroscopy to estimate breast tissue density and potentially provide even more direct information on breast cancer risk. Time-resolved optical mammography at seven wavelengths (635 to 1060 nm) is performed on 49 subjects. Average information on breast tissue of each subject is obtained on oxy- and deoxyhemoglobin, water, lipids, and collagen content, as well as scattering amplitude and power. All parameters, except for blood volume and oxygenation, correlate with mammographic breast density, even if not to the same extent. A synthetic optical index proves to be quite effective in separating different breast density categories. Finally, the estimate of collagen content as a more direct means for the assessment of breast cancer risk is discussed.Breast density is a recognized strong and independent risk factor for breast cancer. We propose the use of time-resolved transmittance spectroscopy to estimate breast tissue density and potentially provide even more direct information on breast cancer risk. Time-resolved optical mammography at seven wavelengths (635 to 1060 nm) is performed on 49 subjects. Average information on breast tissue of each subject is obtained on oxy- and deoxyhemoglobin, water, lipids, and collagen content, as well as scattering amplitude and power. All parameters, except for blood volume and oxygenation, correlate with mammographic breast density, even if not to the same extent. A synthetic optical index proves to be quite effective in separating different breast density categories. Finally, the estimate of collagen content as a more direct means for the assessment of breast cancer risk is discussed.
Author Menna, Simona
Cubeddu, Rinaldo
Quarto, Giovanna
Torricelli, Alessandro
Abbate, Francesca
Villa, Anna M
Taroni, Paola
Pifferi, Antonio
Balestreri, Nicola
Cassano, Enrico
Spinelli, Lorenzo
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Snippet Breast density is a recognized strong and independent risk factor for breast cancer. We propose the use of time-resolved transmittance spectroscopy to estimate...
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SubjectTerms Assessments
Breast
Breast - physiopathology
Breast Neoplasms - diagnosis
Breast Neoplasms - physiopathology
Cancer
Collagens
Densitometry - instrumentation
Density
Diagnosis, Computer-Assisted - methods
Equipment Design
Equipment Failure Analysis
Estimates
Female
Humans
Middle Aged
Optical Devices
Reproducibility of Results
Risk
Risk Assessment
Sensitivity and Specificity
Spectroscopy
Spectrum Analysis - instrumentation
Title Noninvasive assessment of breast cancer risk using time-resolved diffuse optical spectroscopy
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