Alaa Osman
ACTAR Number 5479
Ms. Osman is a Forensic Consultant with education, training and experience in the fields of Mechanical Engineering, Biomedical Engineering, Forensic Engineering and Accident Reconstruction.
Ms. Osman graduated with Departmental Distinction from Duke University with a Bachelor of Science in Biomedical and Mechanical Engineering, where her coursework and scientific research focused on mechanical and biomedical systems design, computer simulation modeling and mathematical computational analysis.
Ms. Osman is trained to utilize cutting edge technology to capture evidence and preserve forensic data using various scientific tools, such as FARO 3D laser scanning, Total Station laser mapping, Lidar 3D scanning, unmanned aerial vehicle (UAV) mapping and imagery, forensic photography and photogrammetry, traffic signal data acquisition and passenger and commercial vehicle black box data imaging.
Ms. Osman’s professional practice includes the use of reliable and advanced engineering and scientific principles and methodologies to process forensic evidence and reverse-engineer dynamics-based collision events for corporate, insurance and legal clients.
Ms. Osman graduated with Departmental Distinction from Duke University with a Bachelor of Science in Biomedical and Mechanical Engineering, where her coursework and scientific research focused on mechanical and biomedical systems design, computer simulation modeling and mathematical computational analysis.
Ms. Osman is trained to utilize cutting edge technology to capture evidence and preserve forensic data using various scientific tools, such as FARO 3D laser scanning, Total Station laser mapping, Lidar 3D scanning, unmanned aerial vehicle (UAV) mapping and imagery, forensic photography and photogrammetry, traffic signal data acquisition and passenger and commercial vehicle black box data imaging.
Ms. Osman’s professional practice includes the use of reliable and advanced engineering and scientific principles and methodologies to process forensic evidence and reverse-engineer dynamics-based collision events for corporate, insurance and legal clients.
