Optical microscopy is limited to shallow interrogation depths as high-resolution imaging in scattering media is challenging. Current methods require complex and expensive experimental setup or suffer from low resolution. Through gating of photons exiting the scattering media using a restricted numerical aperture (NA) fiber optic plate (FOP), we establish a novel spatio-angular filter imaging device that allows deeper imaging in scattering media. Using dilutions of Intralipid (1-4 v/v%) and a USAF resolution target, it is shown that by reducing the NA of the FOP from 0.55 to 0.17, the interrogation depth improves ~2 times using trans-illumination. </p
We present a novel approach for imaging through scattering media that combines the principles of Fou...
In imaging, obtaining high contrast is of great importance. When imaging through scattering media, o...
Standard imaging systems provide a spatial resolution that is ultimately dictated by the numerical a...
Angular Domain Imaging performs Optical Tomography imaging through highly scattering media by reject...
Angular Domain Imaging (ADI) is a high resolution, ballistic imaging method that utilizes the angula...
Optical imaging within scattering media is difficult because the highly scattered light obscures the...
Abstract—This paper describes a novel optical imaging method, deep illumination angular domain imagi...
We show in this Letter a novel approach for high-contrast imaging through scattering media by combin...
Deep Illumination Angular Domain Imaging employs a micromachined angular filter array to detect phot...
In most biological tissues, the maximum optical imaging depth is limited by light scattering. Confoc...
We present a design that exploits the focusing properties of scattering media to increase the resolu...
Angular Domain Imaging (ADI) is a technique for performing optical imaging through highly scattering...
Optical imaging through biological tissues and other scattering media is challenging, as the scatter...
International audienceWe propose a novel technique of microscopy to overcome the effects of both sca...
This is the author accepted manuscript. The final version is available from the publisher via the DO...
We present a novel approach for imaging through scattering media that combines the principles of Fou...
In imaging, obtaining high contrast is of great importance. When imaging through scattering media, o...
Standard imaging systems provide a spatial resolution that is ultimately dictated by the numerical a...
Angular Domain Imaging performs Optical Tomography imaging through highly scattering media by reject...
Angular Domain Imaging (ADI) is a high resolution, ballistic imaging method that utilizes the angula...
Optical imaging within scattering media is difficult because the highly scattered light obscures the...
Abstract—This paper describes a novel optical imaging method, deep illumination angular domain imagi...
We show in this Letter a novel approach for high-contrast imaging through scattering media by combin...
Deep Illumination Angular Domain Imaging employs a micromachined angular filter array to detect phot...
In most biological tissues, the maximum optical imaging depth is limited by light scattering. Confoc...
We present a design that exploits the focusing properties of scattering media to increase the resolu...
Angular Domain Imaging (ADI) is a technique for performing optical imaging through highly scattering...
Optical imaging through biological tissues and other scattering media is challenging, as the scatter...
International audienceWe propose a novel technique of microscopy to overcome the effects of both sca...
This is the author accepted manuscript. The final version is available from the publisher via the DO...
We present a novel approach for imaging through scattering media that combines the principles of Fou...
In imaging, obtaining high contrast is of great importance. When imaging through scattering media, o...
Standard imaging systems provide a spatial resolution that is ultimately dictated by the numerical a...