We present a novel approach for imaging through scattering media that combines the principles of Fourier spatial filtering and single-pixel imaging. We compare the performance of our single-pixel imaging setup with that of a conventional system. First, we show that a single-pixel camera does not reduce the frequency content of the object, when a small pinhole is used as a low-pass filter at the detection side. Second, we show that the introduction of Fourier gating improves the contrast of imaging through scattering media in both optical systems. We conclude that single-pixel imaging fits better than conventional imaging on imaging through scattering media by the Fourier gating
One challenge that has long held the attention of scientists is that of clearly seeing objects hidde...
Single-pixel cameras allow to obtain images in a wide range of challenging scenarios, including broa...
Angular Domain Imaging (ADI) is a high resolution, ballistic imaging method that utilizes the angula...
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...
Ponència presentada a 3rd Biomedical Imaging and Sensing Conference, celebrada a Yokohama, Japó, 19-...
Imaging through scattering media has been a longstanding issue in many scientific fields and several...
We show in this Letter a novel approach for high-contrast imaging through scattering media by combin...
Optical imaging through scattering media is a long-standing challenge. Although many approaches have...
In imaging, obtaining high contrast is of great importance. When imaging through scattering media, o...
Imaging through turbid media is important but has created challenging issues for a long time. Previo...
Smart control of light propagation through highly scattering media is a much desired goal with major...
Single-pixel imaging, with the advantages of a wide spectrum, beyond-visual-field imaging, and robus...
Optical imaging through biological tissues and other scattering media is challenging, as the scatter...
Fourier single-pixel imaging (FSI) is a branch of single-pixel imaging techniques. It allows any ima...
One challenge that has long held the attention of scientists is that of clearly seeing objects hidde...
Single-pixel cameras allow to obtain images in a wide range of challenging scenarios, including broa...
Angular Domain Imaging (ADI) is a high resolution, ballistic imaging method that utilizes the angula...
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...
Ponència presentada a 3rd Biomedical Imaging and Sensing Conference, celebrada a Yokohama, Japó, 19-...
Imaging through scattering media has been a longstanding issue in many scientific fields and several...
We show in this Letter a novel approach for high-contrast imaging through scattering media by combin...
Optical imaging through scattering media is a long-standing challenge. Although many approaches have...
In imaging, obtaining high contrast is of great importance. When imaging through scattering media, o...
Imaging through turbid media is important but has created challenging issues for a long time. Previo...
Smart control of light propagation through highly scattering media is a much desired goal with major...
Single-pixel imaging, with the advantages of a wide spectrum, beyond-visual-field imaging, and robus...
Optical imaging through biological tissues and other scattering media is challenging, as the scatter...
Fourier single-pixel imaging (FSI) is a branch of single-pixel imaging techniques. It allows any ima...
One challenge that has long held the attention of scientists is that of clearly seeing objects hidde...
Single-pixel cameras allow to obtain images in a wide range of challenging scenarios, including broa...
Angular Domain Imaging (ADI) is a high resolution, ballistic imaging method that utilizes the angula...