High-speed dual fluoroscopy (DF) imaging provides a novel, in-vivo solution to quantify the six-degree-of-freedom skeletal kinematics of humans and animals with sub-millimetre accuracy and high temporal resolution. A rigorous geometric calibration of DF system parameters is essential to ensure precise bony rotation and translation measurements. One way to achieve the system calibration is by performing a bundle adjustment with self-calibration. A first-time bundle adjustment-based system calibration was recently achieved. The system calibration through the bundle adjustment has been shown to be robust, precise, and straightforward. Nevertheless, due to the inherent absence of colour/semantic information in DF images, a significant amount of...
Accurate measurements of in-vivo hip kinematics may elucidate the mechanisms responsible for impaire...
The use of biplanar high-speed x-ray fluoroscopy to study fast, 3D movements that are inaccessible f...
The accurate quantification of in-vivo tibio-femoral kinematics is essential for understanding joint...
X-ray imaging is a fundamental tool of routine clinical diagnosis. Fluoroscopic imaging can further ...
INTRODUCTION Accurate quantification of in vivo effects of injury on joint mechanics is essential t...
BACKGROUND: Simultaneous real-time fluoroscopic and nuclear imaging could benefit image-guided (onco...
Model-based 3D-fluoroscopy can quantify joint kinematics with 1mm and 1 deg accuracy level. A calibr...
Model based 3D fluoroscopy can quantify joint kinematics with a mm/deg accuracy level. A calibration...
Thesis (Master's)--University of Washington, 2020Joint pain or loss of function manifests in subtle ...
A fundamental task in photogrammetry is the temporal stability analysis of a camera/imaging-system’s...
Background Accurate knowledge of the spinal structural functions is critical to understand the biome...
Imaging technologies such as cine-radiography, cine-MRI, and X-ray stereo photogrammetry have become...
The kinematic analysis of joint motion has proven to significantly improve orthopedic surgeries by e...
Model based 3D fluoroscopy can quantify joint kinematics with a mm/deg accuracy level. A calibration...
Thesis (S.M.)--Massachusetts Institute of Technology, Dept. of Mechanical Engineering, 2006.Includes...
Accurate measurements of in-vivo hip kinematics may elucidate the mechanisms responsible for impaire...
The use of biplanar high-speed x-ray fluoroscopy to study fast, 3D movements that are inaccessible f...
The accurate quantification of in-vivo tibio-femoral kinematics is essential for understanding joint...
X-ray imaging is a fundamental tool of routine clinical diagnosis. Fluoroscopic imaging can further ...
INTRODUCTION Accurate quantification of in vivo effects of injury on joint mechanics is essential t...
BACKGROUND: Simultaneous real-time fluoroscopic and nuclear imaging could benefit image-guided (onco...
Model-based 3D-fluoroscopy can quantify joint kinematics with 1mm and 1 deg accuracy level. A calibr...
Model based 3D fluoroscopy can quantify joint kinematics with a mm/deg accuracy level. A calibration...
Thesis (Master's)--University of Washington, 2020Joint pain or loss of function manifests in subtle ...
A fundamental task in photogrammetry is the temporal stability analysis of a camera/imaging-system’s...
Background Accurate knowledge of the spinal structural functions is critical to understand the biome...
Imaging technologies such as cine-radiography, cine-MRI, and X-ray stereo photogrammetry have become...
The kinematic analysis of joint motion has proven to significantly improve orthopedic surgeries by e...
Model based 3D fluoroscopy can quantify joint kinematics with a mm/deg accuracy level. A calibration...
Thesis (S.M.)--Massachusetts Institute of Technology, Dept. of Mechanical Engineering, 2006.Includes...
Accurate measurements of in-vivo hip kinematics may elucidate the mechanisms responsible for impaire...
The use of biplanar high-speed x-ray fluoroscopy to study fast, 3D movements that are inaccessible f...
The accurate quantification of in-vivo tibio-femoral kinematics is essential for understanding joint...