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Journal ArticleDOI

Multiwavelength three-dimensional near-infrared tomography of the breast: initial simulation, phantom, and clinical results

TLDR
The reconstructed tumor from the breast cancer patient was found to have a higher oxy-deoxy hemoglobin concentration and also a higher oxygen saturation level than the background, indicating a ductal carcinoma that corresponds well to histology findings.
Abstract
Three-dimensional (3D), multiwavelength near-infrared tomography has the potential to provide new physiological information about biological tissue function and pathological transformation. Fast and reliable measurements of multiwavelength data from multiple planes over a region of interest, together with adequate model-based nonlinear image reconstruction, form the major components of successful estimation of internal optical properties of the region. These images can then be used to examine the concentration of chromophores such as hemoglobin, deoxyhemoglobin, water, and lipids that in turn can serve to identify and characterize abnormalities located deep within the domain. We introduce and discuss a 3D modeling method and image reconstruction algorithm that is currently in place. Reconstructed images of optical properties are presented from simulated data, measured phantoms, and clinical data acquired from a breast cancer patient. It is shown that, with a relatively fast 3D inversion algorithm, useful images of optical absorption and scatter can be calculated with good separation and localization in all cases. It is also shown that, by use of the calculated optical absorption over a range of wavelengths, the oxygen saturation distribution of a tissue under investigation can be deduced from oxygenated and deoxygenated hemoglobin maps. With this method the reconstructed tumor from the breast cancer patient was found to have a higher oxy-deoxy hemoglobin concentration and also a higher oxygen saturation level than the background, indicating a ductal carcinoma that corresponds well to histology findings.

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Proceedings ArticleDOI

Optical mammography with single-wavelength contrast enhancement and multiwavelength oxygenation assessment

TL;DR: The enhanced contrast of the second-derivative images with respect to the absorbance images is complemented by the functional information provided by the oxygenation-index images, which allow for a comparison of oxygenation values in different images.
Journal ArticleDOI

Near-infrared-ray computed tomography with 850-nm peak and high spatial resolutions in first living-body window

TL;DR: In this paper, a first-generation scanner was constructed using the wavelength range of 700-900nm, called the first living-body window, where the NIR photons were produced from an 850-nm-peak light-emitting diode, and the photons penetrating through an object were selected using an infrared filter and detected using a photodiode (PD).
Proceedings ArticleDOI

A time-domain fluorescence diffusion optical tomography system for breast tumor diagnosis

TL;DR: In this article, a prototype time-domain fluorescence diffusion optical tomography (FDOT) system using near-infrared light is presented, which employs two pulsed light sources, 32 source fibers and 32 detection channels, working separately for acquiring the temporal distribution of the photon flux on the tissue surface.
Proceedings ArticleDOI

Optical tomography using independent component analysis to detect absorptive, scattering, or fluorescent inhomogeneities in turbid media

TL;DR: In this paper, a new imaging approach for three-dimensional localization and characterization of absorptive, scattering or fluorescent objects in a turbid medium is presented and demonstrated using simulated and experimental data.
Proceedings ArticleDOI

Breast Cancer Detection and Characterization Using 3D Diffuse Optical Tomography

TL;DR: From in vivo three-dimensional diffuse optical tomography, the optical contrast of 30+ biopsy proven breast lesions were characterized according to mass type and correlation with demographic factors.
References
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Journal ArticleDOI

Optical tomography in medical imaging

TL;DR: A review of methods for the forward and inverse problems in optical tomography can be found in this paper, where the authors focus on the highly scattering case found in applications in medical imaging, and to the problem of absorption and scattering reconstruction.
Journal ArticleDOI

Characterization of the near infrared absorption spectra of cytochrome aa3 and haemoglobin for the non-invasive monitoring of cerebral oxygenation.

TL;DR: The cytochrome aa3 spectrum in vivo from the brains of rats after replacing the blood with a fluorocarbon substitute is obtained and an algorithm for calculating the changes in oxygenated and deoxygenated haemoglobin and oxygenated cy tochrome a a3 in tissue from changes in near IR absorption is constructed.
Journal ArticleDOI

Concurrent MRI and diffuse optical tomography of breast after indocyanine green enhancement

TL;DR: It is found that DOT provides for localization and quantification of exogenous tissue chromophore concentrations and the use of ICG, an albumin bound absorbing dye in plasma, demonstrates the potential to differentiate disease based on the quantified enhancement of suspicious lesions.
Journal ArticleDOI

Imaging the body with diffuse optical tomography

TL;DR: The basic idea of DOT is introduced, the history of optical methods in medicine is reviewed, and a review of the tissue's optical properties, modes of operation for DOT, and the challenges which the development of DOT must overcome are detailed.
Journal ArticleDOI

A finite element approach for modeling photon transport in tissue.

TL;DR: A finite element method for deriving photon density inside an object, and photon flux at its boundary, assuming that the photon transport model is the diffusion approximation to the radiative transfer equation, is introduced herein.
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