Biomedical Deformation Measurement using Laser Techniques - Couverture souple

Kokaj, Jahja

 
9783659613999: Biomedical Deformation Measurement using Laser Techniques

Synopsis

Laser and fiber optics applications have opened some new possibilities in medicine and dentistry. Advanced diagnostic techniques and laser-based therapeutic techniques have been developed. Here, we have introduced some new techniques for medical and dental applications using lasers and modern optics. The main task of our work is biomedical applications of lasers. A new approach based on image holography is applied for dental deformation measurement. The advantages of this technique compare to existing techniques are shown. Imaging and deformation measurement of in-plane and out-plane deformations is performed using the interferometric fringes. Interferograms obtained by holographic-based techniques are shown. The imaging technique, based on optical implementation of moments as to our best knowledge, is introduced for the first time in biomedical applications. In addition to this Fourier Transform of far Field diffraction technique is introduced as well. A simple and robust technique based on the Moiré phenomenon is applied. Using Moire fringes generated by two gratings and their projection on the object to be analyzed, contours and 3-D information are obtained.

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Présentation de l'éditeur

Laser and fiber optics applications have opened some new possibilities in medicine and dentistry. Advanced diagnostic techniques and laser-based therapeutic techniques have been developed. Here, we have introduced some new techniques for medical and dental applications using lasers and modern optics. The main task of our work is biomedical applications of lasers. A new approach based on image holography is applied for dental deformation measurement. The advantages of this technique compare to existing techniques are shown. Imaging and deformation measurement of in-plane and out-plane deformations is performed using the interferometric fringes. Interferograms obtained by holographic-based techniques are shown. The imaging technique, based on optical implementation of moments as to our best knowledge, is introduced for the first time in biomedical applications. In addition to this Fourier Transform of far Field diffraction technique is introduced as well. A simple and robust technique based on the Moiré phenomenon is applied. Using Moire fringes generated by two gratings and their projection on the object to be analyzed, contours and 3-D information are obtained.

Biographie de l'auteur

Professor Jahja Kokaj completed his Post Doc. from CMU Pittsburgh USA. He was Assistant Professor, Associate Professor and Professor at CMU, PRU and Kuwait University. He was involved as a PI or Co-I in projects funded by NASA, LITTON, DARPA and KFAS. He has more than 100 refereed publications in international journals, including 3 University books

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