2013
DOI: 10.1364/boe.4.002911
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Hemodynamic signature of breast cancer under fractional mammographic compression using a dynamic diffuse optical tomography system

Abstract: Near infrared dynamic diffuse optical tomography measurements of breast hemodynamics during fractional mammographic compression offer a novel contrast mechanism for detecting breast cancer and monitoring chemotherapy. Tissue viscoelastic relaxation during the compression period leads to a slow reduction in the compression force and reveals biomechanical and metabolic differences between healthy and lesion tissue. We measured both the absolute values and the temporal evolution of hemoglobin concentration during… Show more

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Cited by 36 publications
(30 citation statements)
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“…1) consists of a high temporal resolution, hybrid continuous wave/frequency domain transmission mode diffuse optical tomography system. The optical instrumentation is integrated into a compression setup also equipped with a Tekscan I-Scan pressure mapping system [44]. The frequency domain component consists of an ISS Imagent (model 96208, ISS Inc., Champaign, IL).…”
Section: Dynamic Tomographic Optical Breast Imaging (Dtobi) Instrumenmentioning
confidence: 99%
See 3 more Smart Citations
“…1) consists of a high temporal resolution, hybrid continuous wave/frequency domain transmission mode diffuse optical tomography system. The optical instrumentation is integrated into a compression setup also equipped with a Tekscan I-Scan pressure mapping system [44]. The frequency domain component consists of an ISS Imagent (model 96208, ISS Inc., Champaign, IL).…”
Section: Dynamic Tomographic Optical Breast Imaging (Dtobi) Instrumenmentioning
confidence: 99%
“…A full description of the experimental setup has been previously published by our group [44]. In summary, the breast is placed between two horizontal parallel plates (equivalent to mammographic craniocaudal (CC) compression), which apply a repeated step compression/release to the breast.…”
Section: Dtobi Measurement Proceduresmentioning
confidence: 99%
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“…The lengthy measurement is a result of sequential cycling through both laser wavelengths and output fibers, where sufficient integration time is needed for each data point to overcome the inherently lower signal-to-noise ratio (SNR) of RF measurements. The need to improve these long acquisition times has become more important recently with the increased use of dynamic breast optical tomography to characterize the breast tissue response to external stimuli 20,21 which requires obtaining a full dataset at least every few seconds.…”
Section: Introductionmentioning
confidence: 99%