Low-coherence spectroscopy (LCS) is a spectroscopic method that allows for quantitative and localized assessment of absorption spectra by combining reflection spectroscopy with low-coherence interferometry. We describe absorption coefficient (µa) measurements by LCS in tissue simulating phantoms with varying scattering and absorbing properties. We used LCS in the 455–680 nm wavelength range with a spectral resolution of 8 nmto obtain µa spectra with ±0.5 mm−1 accuracy. We conclude that LCS is a promising technique for the in vivo determination of tissue chromophore concentrations
We present the optical measurement techniques used in human skin phantom studies. Their accuracy and...
Frequency domain spectroscopy provides a quantitative measure of the optical properties, namely µa a...
Steady-state diffuse reflection spectroscopy is a well-studied optical technique that can provide a ...
Low-coherence spectroscopy (LCS) is a spectroscopic method that allows for quantitative and localize...
Low-coherence interferometry (LCI) allows high-resolution volumetric imaging of tissue morphology an...
Localized spectroscopic measurements of optical properties are invaluable for diagnostic application...
<p>The behavior of light after interacting with a biological medium reveals a wealth of information ...
Quantitative measurements of scattering properties are invaluable for optical techniques in medicine...
We present a novel, noncontact method for the determination of quantitative optical properties of tu...
Multi-spectral imaging enables non-invasive sensing of chemical concentrations in biological tissue ...
Spectroscopic optical coherence tomography (SOCT) combines the imaging capability of optical coheren...
The absorption and scattering coefficient of a macroscopically homogeneous strongly scattering mediu...
In this thesis, a new method has been developed, which determines the optical coefficients spectra (...
We have measured the optical absorption and scattering coefficient spectra of a multiple-scattering ...
Coherence is the fundamental property of optical radiation. Methods based on this characteristic are...
We present the optical measurement techniques used in human skin phantom studies. Their accuracy and...
Frequency domain spectroscopy provides a quantitative measure of the optical properties, namely µa a...
Steady-state diffuse reflection spectroscopy is a well-studied optical technique that can provide a ...
Low-coherence spectroscopy (LCS) is a spectroscopic method that allows for quantitative and localize...
Low-coherence interferometry (LCI) allows high-resolution volumetric imaging of tissue morphology an...
Localized spectroscopic measurements of optical properties are invaluable for diagnostic application...
<p>The behavior of light after interacting with a biological medium reveals a wealth of information ...
Quantitative measurements of scattering properties are invaluable for optical techniques in medicine...
We present a novel, noncontact method for the determination of quantitative optical properties of tu...
Multi-spectral imaging enables non-invasive sensing of chemical concentrations in biological tissue ...
Spectroscopic optical coherence tomography (SOCT) combines the imaging capability of optical coheren...
The absorption and scattering coefficient of a macroscopically homogeneous strongly scattering mediu...
In this thesis, a new method has been developed, which determines the optical coefficients spectra (...
We have measured the optical absorption and scattering coefficient spectra of a multiple-scattering ...
Coherence is the fundamental property of optical radiation. Methods based on this characteristic are...
We present the optical measurement techniques used in human skin phantom studies. Their accuracy and...
Frequency domain spectroscopy provides a quantitative measure of the optical properties, namely µa a...
Steady-state diffuse reflection spectroscopy is a well-studied optical technique that can provide a ...