A method to measure the size, orientation, and location of opaque micro-fibers using digital holography is presented. The method involves the recording of a digital hologram followed by reconstruction at different depths. A novel combination of automated image analysis and statistical techniques, applied on the intensity of reconstructed digital holograms is used to accurately determine the characteristics of the microfibers. The performance of the proposed method is verified with a single fiber of known length and orientation. The potential of the method for measurement of fiber length is further demonstrated through its application to a suspension of fibers in a liquid medium
This dissertation combines various holographic techniques with application on the two- and three-dim...
Digital holography has been reported as an effective tool for particle analysis. Other image-based t...
Understanding dynamic mechanisms, morphology and behavior of bacteria are important to develop new t...
A method to measure the size, orientation, and location of opaque micro-fibers using digital hologr...
Carbon fibers are studied using digital holographic sequences. Fibers have distinct orientation in ...
International audienceThis paper describes a method for optical projection tomography for the 3D in ...
Digital holography is an effective three’ dimensional imaging technique, with the potential to be us...
International audienceDigital holography makes it possible to acquire quickly the interference patte...
The potential of in-line digital holography to locate and measure the size and position of filaments...
Studying the three-dimensional structure of paper fibrous networks is an important step towards unde...
Miniaturization is a development trend of electronics, machinery and information systems, while micr...
Digital holographic microscopy [1-8] is a powerful tool for the imaging of micro-objects contained i...
The mechanical characterization of paper fibers and paper fiber bonds determines the key parameters ...
A hologram of micro-objects contains information about the size, shape and 3D localization of the ob...
Abstract Advancements in the imaging and computing technology have opened the path to digital hologr...
This dissertation combines various holographic techniques with application on the two- and three-dim...
Digital holography has been reported as an effective tool for particle analysis. Other image-based t...
Understanding dynamic mechanisms, morphology and behavior of bacteria are important to develop new t...
A method to measure the size, orientation, and location of opaque micro-fibers using digital hologr...
Carbon fibers are studied using digital holographic sequences. Fibers have distinct orientation in ...
International audienceThis paper describes a method for optical projection tomography for the 3D in ...
Digital holography is an effective three’ dimensional imaging technique, with the potential to be us...
International audienceDigital holography makes it possible to acquire quickly the interference patte...
The potential of in-line digital holography to locate and measure the size and position of filaments...
Studying the three-dimensional structure of paper fibrous networks is an important step towards unde...
Miniaturization is a development trend of electronics, machinery and information systems, while micr...
Digital holographic microscopy [1-8] is a powerful tool for the imaging of micro-objects contained i...
The mechanical characterization of paper fibers and paper fiber bonds determines the key parameters ...
A hologram of micro-objects contains information about the size, shape and 3D localization of the ob...
Abstract Advancements in the imaging and computing technology have opened the path to digital hologr...
This dissertation combines various holographic techniques with application on the two- and three-dim...
Digital holography has been reported as an effective tool for particle analysis. Other image-based t...
Understanding dynamic mechanisms, morphology and behavior of bacteria are important to develop new t...