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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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Journal ArticleDOI

Recent advances in diffuse optical imaging.

TL;DR: The current state-of-the-art of diffuse optical imaging is reviewed, which is an emerging technique for functional imaging of biological tissue and recent work on in vivo applications including imaging the breast and brain is reviewed.
Journal ArticleDOI

Diffuse optics for tissue monitoring and tomography

TL;DR: The theoretical basis for near-infrared or diffuse optical spectroscopy (NIRS or DOS) is developed, and the basic elements of diffuse optical tomography (DOT) are outlined.
Journal ArticleDOI

Near infrared optical tomography using nirfast: algorithm for numerical model and image reconstruction

TL;DR: The results show that 3D modeling can be combined with measured data from multiple wavelengths to reconstruct chromophore concentrations within the tissue, and it is possible to recover scattering spectra, resulting from the dominant Mie-type scatter present in tissue.
Journal ArticleDOI

Imaging and cancer: A review

TL;DR: Targeted imaging and therapeutic agents will be developed in tandem through close collaboration between academia and biotechnology, information technology and pharmaceutical industries to improve outcome and reduce collateral effects.
Journal ArticleDOI

Three-dimensional in vivo fluorescence diffuse optical tomography of breast cancer in humans.

TL;DR: This work represents the first reported 3D fluorescence tomography of human breast cancer in vivo based on fluorescence diffuse optical tomography (FDOT), and the measurements demonstrate that FDOT of breast cancer is feasible and promising.
References
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Journal ArticleDOI

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Journal ArticleDOI

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Journal ArticleDOI

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