Time-domain diffuse correlation spectroscopy (TD-DCS) has been recently proposed to improve detection of deep blood flow dynamics in a biological tissue, such as human brain. To obtain a high sensitive measurement, several experimental parameters such as the source-detector (SD) distance, gate opening time, and width need to be considered and optimized. We use a simulation approach to optimize these parameters based on Monte Carlo computations using a realistic human head model. Two cortical regions are investigated including the frontal and temporal lobes. SD distance ranging from 0 to 45 mm, gate opening time from 400 to 1000 ps, and gate width from 50 to 3000 ps are considered. The goal is to find out the optimal combinations of these pa...
A superconducting nanowire single-photon detector was utilized to enable fast timedomain diffuse cor...
In this work we report a comprehensive simulation study in which we quantify the effects of all par...
We present a new approach to diffuse correlation spectroscopy which overcomes the limited light thro...
Time-domain diffuse correlation spectroscopy (TD-DCS) has been recently proposed to improve detectio...
In order to achieve high-sensitivity time-domain diffuse correlation spectroscopy (TD-DCS) measureme...
Time-domain diffuse correlation spectroscopy (TD-DCS) is an emerging noninvasive optical technique w...
Physiological monitoring of oxygen delivery to the brain has great significance for improving the ma...
Diffuse correlation spectroscopy (DCS) is an optical technique that non-invasively quantifies an ind...
Diffuse correlation spectroscopy (DCS) is an optical technique which, by studying the speckle intens...
Time-domain diffuse correlation spectroscopy (TD-DCS) has been introduced as an advancement of the "...
A superconducting nanowire single-photon detector was utilized to enable fast timedomain diffuse cor...
In this work we report a comprehensive simulation study in which we quantify the effects of all par...
We present a new approach to diffuse correlation spectroscopy which overcomes the limited light thro...
Time-domain diffuse correlation spectroscopy (TD-DCS) has been recently proposed to improve detectio...
In order to achieve high-sensitivity time-domain diffuse correlation spectroscopy (TD-DCS) measureme...
Time-domain diffuse correlation spectroscopy (TD-DCS) is an emerging noninvasive optical technique w...
Physiological monitoring of oxygen delivery to the brain has great significance for improving the ma...
Diffuse correlation spectroscopy (DCS) is an optical technique that non-invasively quantifies an ind...
Diffuse correlation spectroscopy (DCS) is an optical technique which, by studying the speckle intens...
Time-domain diffuse correlation spectroscopy (TD-DCS) has been introduced as an advancement of the "...
A superconducting nanowire single-photon detector was utilized to enable fast timedomain diffuse cor...
In this work we report a comprehensive simulation study in which we quantify the effects of all par...
We present a new approach to diffuse correlation spectroscopy which overcomes the limited light thro...