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George Bega, MD
Volume Ultrasound Core Principles for Clinical Practice
George Bega, MD
03/09/2009 | Time : 61 min
About This Lecture:

Topics mentioned in this video : Benefits of 3D/4D ultrasound over 2D, Overview of 3D/4D technology, Multiplanar scanning in 3D ultrasound, Volume acquisition, Curved rendering in coronal axis, Digital storage of volume data, Workflow of 2D-3D-4D acquisition, Correct use of ultrasound knobology for optimized 3D/4D acquisition, Impact of number of pixels in 3D/4D ultrasound, Definition of voxel, X, Y and Z planes, Volume imaging set-up, 3D/4D terminology, Examples of volume acquisition using different technologies, Manually sliding transducer, Freehand 3D/4D acquisition, Automatic 3D/4D acquisition, Matrix acquisition, Matrix full volume, Matrix half volume, Matrix rendered, , Real time bi-plane scanning, X plane elevation, X plane lateral, X plane rotation, Dynamic data post-processing, Spatial-temporal image correlation, Volume acquisition principles, Niche mode definition, Acquisition of cardiovascular anatomy, 3D/4D use in assisted interventional guidance, Applications of volume measurements, , 3D/4D use in fetal lumg measurements, Overview of common 3D/4D artifacts, Enhancement artifact, Rendering artifact, Motion artifact, Newer technologies that improve 3D/4D acquisition, Future 3D/4D technologies, Pitfalls in 3D/4D technology, Advantages of 3D/4D technology

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Keywords : 3D, 4D, automatic acquisition, electronic scalpel, four-dimensional ultrasound, free hand, inversion rendering mode, matrix acquisition, multiplanar, niche mode, post-processing, reformatting, rendering, semi-automatic rendering mode, surface rendering, three-dimensional ultrasound, volume acquisition, volume measurement, voxel, Z plane

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