In this study, we derive a fast, novel time-domain algorithm to compute the nth-order moment of the power spectral density of the photoelectric current as measured in laser-Doppler flowmetry (LDF). It is well established that in the LDF literature these moments are closely related to fundamental physiological parameters, i.e. concentration of moving erythrocytes and blood flow. In particular, we take advantage of the link between moments in the Fourier domain and fractional derivatives in the temporal domain. Using Parseval's theorem, we establish an exact analytical equivalence between the time-domain expression and the conventional frequency-domain counterpart. Moreover, we demonstrate the appropriateness of estimating the zeroth-, first-...
Abstract Due to simplicity and ease of use, the laser Doppler flowmetry (LDF) has found application...
Monte Carlo (MC) simulations significantly contributed to a better understanding of laser-Doppler fl...
Laser Doppler flowmetry (LDF) is virtually the only non-invasive technique, except for other laser s...
In this study, we derive a fast, novel time-domain algorithm to compute the nth-order moment of the ...
Advances in optical array sensor technology allow for the real time acquisition of dynamic laser spe...
Advances in optical array sensor technology allow for the real time acquisition of dynamic laser spe...
A new laser-Doppler flowmeter at large interoptode spacing, based on single-photon counting (single-...
International audienceIn classical laser Doppler (LD) perfusion measurements the zeroth and first or...
This study reports the derivation of a precise mathematical relationship existing between the differ...
Using Monte Carlo simulations for a semi-infinite medium representing a skeletal muscle tissue, it i...
Laser Doppler flowmetry (LDF) for measurements of tissue blood flow is well-known today. The basic t...
A fast time-domain algorithm for the assessment of tissue blood flow in laser-Doppler flowmetr
Recently, various groups have developed wide field laser Doppler perfusion imaging systems based on ...
Recently, various groups have developed wide field laser Doppler perfusion imaging systems based on ...
Monte Carlo (MC) simulations significantly contributed to a better understanding of laser-Doppler fl...
Abstract Due to simplicity and ease of use, the laser Doppler flowmetry (LDF) has found application...
Monte Carlo (MC) simulations significantly contributed to a better understanding of laser-Doppler fl...
Laser Doppler flowmetry (LDF) is virtually the only non-invasive technique, except for other laser s...
In this study, we derive a fast, novel time-domain algorithm to compute the nth-order moment of the ...
Advances in optical array sensor technology allow for the real time acquisition of dynamic laser spe...
Advances in optical array sensor technology allow for the real time acquisition of dynamic laser spe...
A new laser-Doppler flowmeter at large interoptode spacing, based on single-photon counting (single-...
International audienceIn classical laser Doppler (LD) perfusion measurements the zeroth and first or...
This study reports the derivation of a precise mathematical relationship existing between the differ...
Using Monte Carlo simulations for a semi-infinite medium representing a skeletal muscle tissue, it i...
Laser Doppler flowmetry (LDF) for measurements of tissue blood flow is well-known today. The basic t...
A fast time-domain algorithm for the assessment of tissue blood flow in laser-Doppler flowmetr
Recently, various groups have developed wide field laser Doppler perfusion imaging systems based on ...
Recently, various groups have developed wide field laser Doppler perfusion imaging systems based on ...
Monte Carlo (MC) simulations significantly contributed to a better understanding of laser-Doppler fl...
Abstract Due to simplicity and ease of use, the laser Doppler flowmetry (LDF) has found application...
Monte Carlo (MC) simulations significantly contributed to a better understanding of laser-Doppler fl...
Laser Doppler flowmetry (LDF) is virtually the only non-invasive technique, except for other laser s...