Multi-exposure laser speckle contrast imaging (MELSCI) systems based on high frame rate cameras are suitable for wide-field quantitative measurement of blood flow. However, high-speed camera-based MELSCI requires high power consumption, large memory, and high processing capability, which may lead to relatively large and expensive hardware. To realize a compact and cost-efficient MELSCI system, we discuss an application of the multi-tap CMOS image sensor originally designed for time-of-flight range imaging. This image sensor operated in the global shutter mode and every pixel was provided with multiple charge-storage diodes. Multiple images for different exposures were acquired simultaneously because exposure patterns were programmable to im...
Laser speckle imaging (LSI) is a noninvasive optical imaging technique able to provide wide-field tw...
Recently, Laser Speckle Imaging (LSI) has been applied to measure blood perfusion in human skin. Att...
Recently, Laser Speckle Imaging (LSI) has been applied to measure blood perfusion in human skin. Att...
Multi-exposure laser speckle contrast imaging (MELSCI) systems based on high frame rate cameras are ...
A system has been developed in which multi-exposure Laser Speckle Contrast Imaging (LSCI) is impleme...
A multiple exposure laser speckle contrast imaging (MELSCI) setup for visualizing blood perfusion wa...
We present a first evaluation of a new multi-exposure laser speckle contrast imaging (MELSCI) system...
Laser speckle contrast imaging (LSCI) has emerged as a valuable tool for cerebral blood flow (CBF) i...
The microcirculation, the blood flow in the smallest blood vessels in the body, has a vital function...
ABSTRACT. When laser light illuminates a diffuse object, it produces a random interference effect kn...
When laser light illuminates a diffuse object, it produces a random interference effect known as a s...
Noninvasive methods to visualize blood flow in tissue are important in the clinical environment. Mos...
A new approach for multi-exposure laser speckle contrast imaging (MESI) which exploits a novel singl...
Laser speckle imaging (LSI) is a noninvasive optical imaging technique able to provide wide-field tw...
Recently, Laser Speckle Imaging (LSI) has been applied to measure blood perfusion in human skin. Att...
Recently, Laser Speckle Imaging (LSI) has been applied to measure blood perfusion in human skin. Att...
Multi-exposure laser speckle contrast imaging (MELSCI) systems based on high frame rate cameras are ...
A system has been developed in which multi-exposure Laser Speckle Contrast Imaging (LSCI) is impleme...
A multiple exposure laser speckle contrast imaging (MELSCI) setup for visualizing blood perfusion wa...
We present a first evaluation of a new multi-exposure laser speckle contrast imaging (MELSCI) system...
Laser speckle contrast imaging (LSCI) has emerged as a valuable tool for cerebral blood flow (CBF) i...
The microcirculation, the blood flow in the smallest blood vessels in the body, has a vital function...
ABSTRACT. When laser light illuminates a diffuse object, it produces a random interference effect kn...
When laser light illuminates a diffuse object, it produces a random interference effect known as a s...
Noninvasive methods to visualize blood flow in tissue are important in the clinical environment. Mos...
A new approach for multi-exposure laser speckle contrast imaging (MESI) which exploits a novel singl...
Laser speckle imaging (LSI) is a noninvasive optical imaging technique able to provide wide-field tw...
Recently, Laser Speckle Imaging (LSI) has been applied to measure blood perfusion in human skin. Att...
Recently, Laser Speckle Imaging (LSI) has been applied to measure blood perfusion in human skin. Att...