Light-scattering methods are widely used in soft matter physics and biomedical optics to probe dynamics in turbid media, such as diffusion in colloids or blood flow in biological tissue. These methods typically rely on fluctuations of coherent light intensity, and therefore cannot accommodate more than a few modes per detector. This limitation has hindered efforts to measure deep tissue blood flow with high speed, since weak diffuse light fluxes, together with low single-mode fiber throughput, result in low photon count rates. To solve this, we introduce multimode fiber (MMF) interferometry to the field of diffuse optics. In doing so, we transform a standard complementary metal-oxide-semiconductor (CMOS) camera into a sensitive detector arr...
This paper presents a multidistance and multiwavelength diffuse correlation spectroscopy (DCS) appro...
Fast noninvasive probing of spatially varying decorrelating events, such as cerebral blood flow bene...
We have previously demonstrated a novel interferometric multispeckle Fourier domain diffuse correla...
We present multi-exposure interferometric diffusing wave spectroscopy (MiDWS), which measures brain ...
Diffuse optics (DO) is a light-based technique used to study the human brain, but it suffers from lo...
Cerebral blood flow (CBF) is essential for brain function, and CBF-related signals can inform us abo...
The field of diffuse optics has provided a rich set of neurophotonic tools to measure the human brai...
Activity of the human visual cortex, elicited by steady-state flickering at 8Hz, is non-invasively p...
Red blood cells (RBCs) transport oxygen to tissues and remove carbon dioxide. Diffuse optical flowme...
Continuous, accurate monitoring of cerebral perfusion may reduce morbidity and mortality in patients...
We present a new approach to diffuse correlation spectroscopy which overcomes the limited light thro...
Frequent measurement of cerebral hemodynamics is crucial for continuous assessment of brain function...
Functional optical imaging techniques, such as diffuse optical imaging and spectroscopy and laser sp...
Traditionally, diffuse correlation spectroscopy (DCS) measures microvascular blood flow by fitting a...
Speckle contrast optical spectroscopy (SCOS) measures absolute blood flow in deep tissue, by taking ...
This paper presents a multidistance and multiwavelength diffuse correlation spectroscopy (DCS) appro...
Fast noninvasive probing of spatially varying decorrelating events, such as cerebral blood flow bene...
We have previously demonstrated a novel interferometric multispeckle Fourier domain diffuse correla...
We present multi-exposure interferometric diffusing wave spectroscopy (MiDWS), which measures brain ...
Diffuse optics (DO) is a light-based technique used to study the human brain, but it suffers from lo...
Cerebral blood flow (CBF) is essential for brain function, and CBF-related signals can inform us abo...
The field of diffuse optics has provided a rich set of neurophotonic tools to measure the human brai...
Activity of the human visual cortex, elicited by steady-state flickering at 8Hz, is non-invasively p...
Red blood cells (RBCs) transport oxygen to tissues and remove carbon dioxide. Diffuse optical flowme...
Continuous, accurate monitoring of cerebral perfusion may reduce morbidity and mortality in patients...
We present a new approach to diffuse correlation spectroscopy which overcomes the limited light thro...
Frequent measurement of cerebral hemodynamics is crucial for continuous assessment of brain function...
Functional optical imaging techniques, such as diffuse optical imaging and spectroscopy and laser sp...
Traditionally, diffuse correlation spectroscopy (DCS) measures microvascular blood flow by fitting a...
Speckle contrast optical spectroscopy (SCOS) measures absolute blood flow in deep tissue, by taking ...
This paper presents a multidistance and multiwavelength diffuse correlation spectroscopy (DCS) appro...
Fast noninvasive probing of spatially varying decorrelating events, such as cerebral blood flow bene...
We have previously demonstrated a novel interferometric multispeckle Fourier domain diffuse correla...