Refractive index retrieval is possible using the transport intensity equation (TIE), which presents advantages over interferometric techniques. The TIE method is valid only for paraxial ray assumptions. However, diffraction can nullify these TIE model assumptions. Therefore, the refractive index is problematic for reconstruction in three-dimensions (3D) using a set of defocused images, as diffraction effects become prominent. We propose a method to recover the 3D refractive index by combining TIE and deconvolution. A brightfield (BF) microscope was then constructed to apply the proposed technique. A microsphere was used as a sample with well-known properties. The deconvolution of the BF-images of the sample using the microscope’s 3D point s...
When light strikes at an object, its details are engraved on wave’s three properties (amplitude, wav...
Phase is an important component of an optical wavefield bearing the information of the refractive in...
In this thesis, we study the 3 challenges described above. First, we study different reconstruction ...
Refractive index retrieval is possible using the transport intensity equation (TIE), which presents ...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Mechanical Engineering, 2011.Catalo...
A simple and practical method to measure three-dimensional (3-D) refractive index (RI) distributions...
The glass beads are translucent objects that serve as a pattern to characterize different techniques...
International audienceWe have developed a tomographic diffractive microscope, equipped with a fluore...
International audienceWe present an optical tomographic diffractive microscope, a device able to ima...
Three-dimensional optical microscopy is often complicated by a refractive index mismatch between the...
The commonly known transport of intensity equation (TIE) was proposed by Teague as a method for the ...
International audienceTomographic diffraction microscopy is a three-dimensional quantitative optical...
Intensity diffusion caused by optical diffraction limits the imaging resolution of conventional opti...
Optical tomography based on quantitative phase microscopy is used to determine nondestructively and...
We report the experimental implementation of optical diffraction tomography for quantitative 3D map...
When light strikes at an object, its details are engraved on wave’s three properties (amplitude, wav...
Phase is an important component of an optical wavefield bearing the information of the refractive in...
In this thesis, we study the 3 challenges described above. First, we study different reconstruction ...
Refractive index retrieval is possible using the transport intensity equation (TIE), which presents ...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Mechanical Engineering, 2011.Catalo...
A simple and practical method to measure three-dimensional (3-D) refractive index (RI) distributions...
The glass beads are translucent objects that serve as a pattern to characterize different techniques...
International audienceWe have developed a tomographic diffractive microscope, equipped with a fluore...
International audienceWe present an optical tomographic diffractive microscope, a device able to ima...
Three-dimensional optical microscopy is often complicated by a refractive index mismatch between the...
The commonly known transport of intensity equation (TIE) was proposed by Teague as a method for the ...
International audienceTomographic diffraction microscopy is a three-dimensional quantitative optical...
Intensity diffusion caused by optical diffraction limits the imaging resolution of conventional opti...
Optical tomography based on quantitative phase microscopy is used to determine nondestructively and...
We report the experimental implementation of optical diffraction tomography for quantitative 3D map...
When light strikes at an object, its details are engraved on wave’s three properties (amplitude, wav...
Phase is an important component of an optical wavefield bearing the information of the refractive in...
In this thesis, we study the 3 challenges described above. First, we study different reconstruction ...