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Study and application of the FDK algorithm for multi-slice tomographic images reconstruction

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Author(s):
Ericky Caldas de Almeida Araujo
Total Authors: 1
Document type: Master's Dissertation
Press: São Paulo.
Institution: Universidade de São Paulo (USP). Instituto de Física (IF/SBI)
Defense date:
Examining board members:
Paulo Roberto Costa; Ricardo Tadeu Lopes; Cecil Chow Robilotta
Advisor: Paulo Roberto Costa
Abstract

This work consisted on the study and application of the FDK (Feldkamp-Davis-Kress) algorithm for tomographic image reconstruction using cone-beam geometry, resulting on the implementation of an adapted multi-slice computed tomography (MSCT) system. For the acquisition of the projections, a rotating platform coupled to a goniometer, an x-ray equipment and a CCD type digital detector were used. The FDK algorithm was implemented on a PC which was used for the reconstruction process. Initially, the original FDK algorithm was applied considering only the ideal physical conditions in the measurement process. Then some artifacts corrections related to the projections measurement process were incorporated. Computational simulations were performed to test the functioning of the implemented algorithm. Three projections acquisition systems, which used different x-ray equipments, detectors, methodologies and radiographic techniques, were assembled and tested in order to ensure that the best possible set of data was collected. The implemented MSCT system was calibrated. A specially designed and manufactured object with a known linear attenuation coefficient distribution was used for this purpose. Finally, the implemented MSCT system was used for multi-slice tomographic reconstruction of an inhomogeneous object, whose attenuation coefficient distribution was unknown. The reconstructed images were analyzed to assess the performance of the TCMC system that was implemented. (AU)