A bone tissue phantom prototype allowing to test, in general, optical flowmeters at large interoptode spacings, such as laser-Doppler flowmetry or diffuse correlation spectroscopy, has been developed by 3D-stereolithography technique. It has been demonstrated that complex tissue vascular systems of any geometrical shape can be conceived. Absorption coefficient, reduced scattering coefficient and refractive index of the optical phantom have been measured to ensure that the optical parameters reasonably reproduce real human bone tissue in vivo. An experimental demonstration of a possible use of the optical phantom, utilizing a laser-Doppler flowmeter, is also presented
Non-invasive in vivo diffuse optical characterization of human bone opens a new possibility of diagn...
The continuous running of blood in the cardiovascular system is very important since it carries oxyg...
Blood flow and its regulation, as well as hemodynamics in general,are important for the health of tis...
A bone tissue phantom prototype allowing to test, in general, optical flowmeters at large interoptod...
The non-invasive and, often, continuous measurement of the hemodynamics of the body, and for the mai...
Diffuse optical techniques were used to measure hemodynamics of tissues non-invasively. Spectroscopy...
Non-invasive in vivo diffuse optical characterization of human bone opens a new possibility of diagn...
The aim of this study was to investigate the effect of emitter-detector separation distance and arte...
A new laser-Doppler flowmeter at large interoptode spacing, based on single-photon counting (single-...
Laser-Doppler flowmetry (LDF) is an outstanding tool to monitor blood flow in a continuous and non-i...
Photoacoustic Doppler velocimetry provides a major opportunity to overcome limitations of existing b...
Thesis (Ph. D.)--University of Rochester. The Institute of Optics, 2018.Near-infrared light has been...
Non-invasive in vivo diffuse optical characterization of human bone opens a new possibility of diagn...
Tissue-equivalent phantoms that mimic the optical properties of human and animal tissues are commonl...
<div><p>Non-invasive <i>in vivo</i> diffuse optical characterization of human bone opens a new possi...
Non-invasive in vivo diffuse optical characterization of human bone opens a new possibility of diagn...
The continuous running of blood in the cardiovascular system is very important since it carries oxyg...
Blood flow and its regulation, as well as hemodynamics in general,are important for the health of tis...
A bone tissue phantom prototype allowing to test, in general, optical flowmeters at large interoptod...
The non-invasive and, often, continuous measurement of the hemodynamics of the body, and for the mai...
Diffuse optical techniques were used to measure hemodynamics of tissues non-invasively. Spectroscopy...
Non-invasive in vivo diffuse optical characterization of human bone opens a new possibility of diagn...
The aim of this study was to investigate the effect of emitter-detector separation distance and arte...
A new laser-Doppler flowmeter at large interoptode spacing, based on single-photon counting (single-...
Laser-Doppler flowmetry (LDF) is an outstanding tool to monitor blood flow in a continuous and non-i...
Photoacoustic Doppler velocimetry provides a major opportunity to overcome limitations of existing b...
Thesis (Ph. D.)--University of Rochester. The Institute of Optics, 2018.Near-infrared light has been...
Non-invasive in vivo diffuse optical characterization of human bone opens a new possibility of diagn...
Tissue-equivalent phantoms that mimic the optical properties of human and animal tissues are commonl...
<div><p>Non-invasive <i>in vivo</i> diffuse optical characterization of human bone opens a new possi...
Non-invasive in vivo diffuse optical characterization of human bone opens a new possibility of diagn...
The continuous running of blood in the cardiovascular system is very important since it carries oxyg...
Blood flow and its regulation, as well as hemodynamics in general,are important for the health of tis...