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Changes in the sac and coil mass over time were visualized using model registration techniques and quantified using volume calculations.All 8 of the coiled aneurysms with major recurrence had significant aneurysm sac growth (15% to 102% increase in volume), independent of change in coil volume.
Healthy knee kinematics during dynamic full flexion were evaluated using 3D-to-2D model registration techniques.
In this study, 3D-to-2D model registration techniques have been used to measure healthy knee kinematics during dynamic full flexion.
3D-to-2D model registration techniques [ 1– 4] and MRI-based methods [ 5– 9] are used for assessing 3D knee kinematics without implants.
The purpose of this study was to observe healthy kinematics during full flexion in a lunge using 3D-to-2D model registration techniques.
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The kinematics of the medial UKA was determined using a 3-dimensional model registration technique.
Three-dimensional kinematics was analyzed by fluoroscopic examinations of subjects using a single-plane model-image registration technique.
Recently, the feasibility of the 3D-to-2D model-to-image registration techniques was assessed for kinematic analyses of cadaveric hip joints [ 15, 16].
Healthy hip kinematics were evaluated in four different functional weight-bearing activities over the range of 100° of flexion and 60° of axial rotation by 3D-to-2D model-to-image registration techniques.
The 3D position and orientation of the femur and tibia/fibula were determined using 3D-to-2D CT model-to-flat panel image registration techniques [ 3, 4]).
Digitally reconstructed radiographic images were used for 3D-to-2D model-to-image registration technique.
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