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Featured researches published by Kaleel Al-Durgham.


Videometrics, Range Imaging, and Applications XIV | 2017

Rigorous accuracy assessment for 3D reconstruction using time-series dual fluoroscopy (DF) image pairs

Kaleel Al-Durgham; Derek D. Lichti; Gregor Kuntze; Janet L. Ronsky

High-speed biplanar videoradiography, or clinically referred to as dual fluoroscopy (DF), imaging systems are being used increasingly for skeletal kinematics analysis. Typically, a DF system comprises two X-ray sources, two image intensifiers and two high-speed video cameras. The combination of these elements provides time-series image pairs of articulating bones of a joint, which permits the measurement of bony rotation and translation in 3D at high temporal resolution (e.g., 120-250 Hz). Assessment of the accuracy of 3D measurements derived from DF imaging has been the subject of recent research efforts by several groups, however with methodological limitations. This paper presents a novel and simple accuracy assessment procedure based on using precise photogrammetric tools. We address the fundamental photogrammetry principles for the accuracy evaluation of an imaging system. Bundle adjustment with selfcalibration is used for the estimation of the system parameters. The bundle adjustment calibration uses an appropriate sensor model and applies free-network constraints and relative orientation stability constraints for a precise estimation of the system parameters. A photogrammetric intersection of time-series image pairs is used for the 3D reconstruction of a rotating planar object. A point-based registration method is used to combine the 3D coordinates from the intersection and independently surveyed coordinates. The final DF accuracy measure is reported as the distance between 3D coordinates from image intersection and the independently surveyed coordinates. The accuracy assessment procedure is designed to evaluate the accuracy over the full DF image format and a wide range of object rotation. Experiment of reconstruction of a rotating planar object reported an average positional error of 0.44 ± 0.2 mm in the derived 3D coordinates (minimum 0.05 and maximum 1.2 mm).


Photogrammetric Engineering and Remote Sensing | 2014

Association-Matrix-Based Sample Consensus Approach for Automated Registration of Terrestrial Laser Scans Using Linear Features

Kaleel Al-Durgham; Ayman Habib


ISPRS Annals of the Photogrammetry, Remote Sensing and Spatial Information Sciences | 2013

RANSAC APPROACH FOR AUTOMATED REGISTRATION OF TERRESTRIAL LASER SCANS USING LINEAR FEATURES

Kaleel Al-Durgham; Ayman Habib; Eunju Kwak


Journal of the Korean Society of Surveying, Geodesy, Photogrammetry and Cartography | 2014

Multi-camera System Calibration with Built-in Relative Orientation Constraints (Part 2) Automation, Implementation, and Experimental Results

Z. Lari; Ayman Habib; Mehdi Mazaheri; Kaleel Al-Durgham


ISPRS - International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences | 2014

A novel quality control procedure for the evaluation of laser scanning data segmentation

Z. Lari; Kaleel Al-Durgham; A. Habib


Archive | 2014

SOLUTION FREQUENCY-BASED PROCEDURE FOR AUTOMATED REGISTRATION OF TERRESTRIAL LASER SCANS USING LINEAR FEATURES

Kaleel Al-Durgham; Ayman Habib; Mehdi Mazaheri


Revista Brasileira de Cartografia | 2013

AUTOMATED DETECTION, LOCALIZATION, AND IDENTIFICATION OF SIGNALIZED TARGETS AND THEIR IMPACT ON DIGITAL CAMERA CALIBRATION

Ayman Habib; Z. Lari; Eunju Kwak; Kaleel Al-Durgham


ISPRS Annals of the Photogrammetry, Remote Sensing and Spatial Information Sciences | 2018

BUNDLE ADJUSTMENT-BASED STABILITY ANALYSIS METHOD WITH A CASE STUDY OF A DUAL FLUOROSCOPY IMAGING SYSTEM

Kaleel Al-Durgham; Derek D. Lichti; Ivan Detchev; Gregor Kuntze; Janet L. Ronsky


ISPRS - International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences | 2018

MODELLING ERRORS IN X-RAY FLUOROSCOPIC IMAGING SYSTEMS USING PHOTOGRAMMETRIC BUNDLE ADJUSTMENT WITH A DATA-DRIVEN SELF-CALIBRATION APPROACH

Jacky C. K. Chow; Derek D. Lichti; Kathleen Ang; Kaleel Al-Durgham; Gregor Kuntze; Gulshan Sharma; Janet L. Ronsky


ISPRS - International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences | 2016

Toward an Automatic Calibration of Dual Fluoroscopy Imaging Systems

Kaleel Al-Durgham; Derek D. Lichti; Gregor Kuntze; Gulshan Sharma; Janet L. Ronsky

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Z. Lari

University of Calgary

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