2D FSE WFS
Vantage Galan 3T
High-Definition PIQE Images can be acquired by implementation of a Deep Learning Noise and Ringing Reduction Techniques while utilizing up to 3 x Up-Sampling Image Reconstructions.
Maintain Base Line Signal to Noise Ratio (SNR), 3 mm Through-Plane and In-Plane Isotropic Matrix while enhancing Anatomical Detail.
2D FSE
Vantage Galan 3T
High-Definition PIQE Images can be acquired by implementation of a Deep Learning Noise and Ringing Reduction Techniques while utilizing up to 3 x Up-Sampling Image Reconstructions.
Maintain Base Line SNR, 3 mm Through-Plane and In-Plane Isotropic Matrix for Better White Matter Lesion Visualization.
2D FSE
Vantage Galan 3T
High-Definition PIQE Images can be acquired by implementation of a Deep Learning Noise and Ringing Reduction Techniques while utilizing up to 3 x Up-Sampling Image Reconstructions.
3 mm Through-Plane and Decrease In-Plane Isotropic Matrix for scan time reduction while enhancing Anatomical Detail. Canon’s Deep Learning Ringing Reduction Technique when utilizing lower Phase Encoding Matrix allows for a scan time reduction of 1 to 2 minutes while enhancing anatomical detail due to the possibility of Up-Sampling Technology by a Factor of 3.
2D FSE
Vantage Galan 3T
High-Definition PIQE Images can be acquired by implementation of a Deep Learning Noise and Ringing Reduction Techniques while utilizing up to 3 x Up-Sampling Image Reconstructions.
3 mm Through-Plane and Decrease In-Plane Isotropic Matrix for scan time reduction while enhancing Anatomical Detail in regions with tendency to motion. Canon’s Deep Learning Ringing Reduction Technique when utilizing lower Phase Encoding Matrix allows for a scan time reduction of 1 to 2 minutes while enhancing anatomical detail due to the possibility of Up-Sampling Technology by a Factor of 3.
2D FSE
Vantage Orian 1.5T
High-Definition PIQE Images can be acquired by implementation of a Deep Learning Noise and Ringing Reduction Techniques while utilizing up to 3 x Up-Sampling Image Reconstructions.
1.5 mm Through-Plane and Decrease In-Plane Isotropic Matrix for maintaining SNR while enhancing Anatomical Detail in Small Body Regions.
2D FSE
Vantage Orian 1.5T
High-Definition PIQE Images can be acquired by implementation of a Deep Learning Noise and Ringing Reduction Techniques while utilizing up to 3 x Up-Sampling Image Reconstructions.
2.3 mm Through-Plane and Decrease In-Plane Isotropic Matrix for maintaining SNR while enhancing Anatomical Detail and Pathology.
2D FSE
Vantage Orian 1.5T
High-Definition PIQE Images can be acquired by implementation of a Deep Learning Noise and Ringing Reduction Techniques while utilizing up to 3 x Up-Sampling Image Reconstructions.
3 mm Through-Plane and Decrease In-Plane Isotropic Matrix for maintaining SNR while enhancing Anatomical Detail and Pathology for Pre and Post Interventional Procedures.
2D FSE
Vantage Orian 1.5T
High-Definition PIQE Images can be acquired by implementation of a Deep Learning Noise and Ringing Reduction Techniques while utilizing up to 3 x Up-Sampling Image Reconstructions.
2.5 mm Through-Plane and Decrease In-Plane Matrix for maintaining SNR while enhancing Anatomical Detail and Extent Pathology/Edema in Bone.
2D FSE
Vantage Orian 1.5T
High-Definition PIQE Images can be acquired by implementation of a Deep Learning Noise and Ringing Reduction Techniques while utilizing up to 3 x Up-Sampling Image Reconstructions.
2.3 mm Through-Plane and Decrease In-Plane Isotropic Matrix for maintaining SNR while enhancing Anatomical Detail for Ligament and Tendon Visualization.