This project represents a step towards the overarching aim of imaging scattering specimens. In such samples, the contrast and sharpness of optical images is se-verely reduced since a large fraction of the light is scattered and manifests itself as a uniform background. In optical projection tomography it has been demon-strated previously that the scattered background can be separated from the im-age-forming light by capturing only the first arriving photons with ingenious ultra-fast gated optical set-ups [1-3]. The goal of this project is to investigate if the same can be achieved for optical microscopy using a gated camera and a low-cost laser. In addition, this project aims to be to quantitatively stating how much the image quality can b...
Imaging in turbid media such as biological tissue is challenging primarily due to light scattering, ...
Experimental work in turbid media has shown that transillumination images can be significantly impro...
Recent technological advances now enable time-gated acquisition of photons at very fast rates. This ...
This project represents a step towards the overarching aim of imaging scattering specimens. In such ...
Low scattering media is the best scenario for optical imaging in thick samples and deep tissue, as i...
The problem of optical imaging through a highly scattering volume diffuser, in particular, biologica...
The deterministic nature of scattering in turbid media and the advances in light control have opened...
Optical microscopy has been widely used in the life sciences and biological research for several dec...
Optical microscopy has been used in biomedical studies for more than three centuries, but the limita...
© 2020, Springer Nature Limited.Optical imaging has had a central role in elucidating the underlying...
Image formation through scattering media is one of the most challenging problems of modern image sci...
Light scattering poses significant challenges for biomedical optical imaging techniques. Diffuse sc...
The aim of this research project was the development of efficient image reconstruction algorithms fo...
This is the author accepted manuscript. The final version is available from nature Research via the ...
When light penetrates biological tissue, scattering occurs, degrading the image quality with imaging...
Imaging in turbid media such as biological tissue is challenging primarily due to light scattering, ...
Experimental work in turbid media has shown that transillumination images can be significantly impro...
Recent technological advances now enable time-gated acquisition of photons at very fast rates. This ...
This project represents a step towards the overarching aim of imaging scattering specimens. In such ...
Low scattering media is the best scenario for optical imaging in thick samples and deep tissue, as i...
The problem of optical imaging through a highly scattering volume diffuser, in particular, biologica...
The deterministic nature of scattering in turbid media and the advances in light control have opened...
Optical microscopy has been widely used in the life sciences and biological research for several dec...
Optical microscopy has been used in biomedical studies for more than three centuries, but the limita...
© 2020, Springer Nature Limited.Optical imaging has had a central role in elucidating the underlying...
Image formation through scattering media is one of the most challenging problems of modern image sci...
Light scattering poses significant challenges for biomedical optical imaging techniques. Diffuse sc...
The aim of this research project was the development of efficient image reconstruction algorithms fo...
This is the author accepted manuscript. The final version is available from nature Research via the ...
When light penetrates biological tissue, scattering occurs, degrading the image quality with imaging...
Imaging in turbid media such as biological tissue is challenging primarily due to light scattering, ...
Experimental work in turbid media has shown that transillumination images can be significantly impro...
Recent technological advances now enable time-gated acquisition of photons at very fast rates. This ...