The measurement of light absorption and scattering properties of biological materials has several diagnostic and therapeutic applications. We can measure these properties for skin without contact using structured illumination and imaging. However, building simple handheld devices remains challenging due to motion artefacts and moving targets. To overcome this limitation, we project random speckle patterns instead of discrete spatial frequencies on the target. Since random patterns are spatially broadband, they capture more information per image, enabling frame-by-frame analysis. In this paper, we describe the statistics of objective speckles and demonstrate how the optical system is designed for spatially bandlimited illumination. Next, we ...
The advent of biomedical optics and understanding of light transport through tissues has gathered en...
Scattering of coherent light from a disordered material produces a complex distribution of intensity...
Scattering of coherent light from a disordered material produces a complex distribution of intensity...
Laser speckle imaging (LSI) is a fast, noninvasive method to obtain relative particle dynamics in hi...
Laser speckle imaging (LSI) is a fast, noninvasive method to obtain relative particle dynamics in hi...
The study of wave propagation through random media is important for measurements involving the atmos...
Due to its simplicity and low cost, laser speckle imaging (LSI) has achieved widespread use in biome...
Due to its simplicity and low cost, laser speckle imaging (LSI) has achieved widespread use in biome...
We present an experimental scheme for determining the light transport properties of random disordere...
Imaging through a highly random media e.g. biological tissue has been one of the prime challenges in...
We present an experimental scheme for determining the light transport properties of random disordere...
Imaging through a highly random media e.g. biological tissue has been one of the prime challenges in...
This thesis describes the development of an instrument which uses the statistical properties of lase...
In this dissertation, a methodology for experimentally creating and controlling random light in free...
Quantitative characterization of biological tissues through determination of optical parameters has ...
The advent of biomedical optics and understanding of light transport through tissues has gathered en...
Scattering of coherent light from a disordered material produces a complex distribution of intensity...
Scattering of coherent light from a disordered material produces a complex distribution of intensity...
Laser speckle imaging (LSI) is a fast, noninvasive method to obtain relative particle dynamics in hi...
Laser speckle imaging (LSI) is a fast, noninvasive method to obtain relative particle dynamics in hi...
The study of wave propagation through random media is important for measurements involving the atmos...
Due to its simplicity and low cost, laser speckle imaging (LSI) has achieved widespread use in biome...
Due to its simplicity and low cost, laser speckle imaging (LSI) has achieved widespread use in biome...
We present an experimental scheme for determining the light transport properties of random disordere...
Imaging through a highly random media e.g. biological tissue has been one of the prime challenges in...
We present an experimental scheme for determining the light transport properties of random disordere...
Imaging through a highly random media e.g. biological tissue has been one of the prime challenges in...
This thesis describes the development of an instrument which uses the statistical properties of lase...
In this dissertation, a methodology for experimentally creating and controlling random light in free...
Quantitative characterization of biological tissues through determination of optical parameters has ...
The advent of biomedical optics and understanding of light transport through tissues has gathered en...
Scattering of coherent light from a disordered material produces a complex distribution of intensity...
Scattering of coherent light from a disordered material produces a complex distribution of intensity...