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  1. Three-dimensional (3D) echocardiographic (3DE) imaging represents a major innovation in cardiovascular ultrasound. Advancements in computer and transducer technologies permit real-time 3DE acquisition and presentation of cardiac structures from any spatial point of view.

  2. Anatomy of right atrial structures by real-time 3D transesophageal echocardiography. Faletra FF, Ho SY, Auricchio A. Comment: This review describes a step-by-step approach for acquisition and processing of RT 3D TEE images of right atrial structures of relevance to electrophysiologists.

  3. Direct measurement without geometrical assumptions about cavity shape and hypertrophy distribution. More accurate that the linear or the 2D measurements. Higher inter-measurement and test/retest reproducibility. Better discriminates small.

  4. Display. Lang, Badano et al. EAE/ASE 3D Guidelines JASE 2012. Display the tricuspid valve with the septum placed inferiorly in the six o’clock position, regardless if the valve is oriented as viewed from the right atrium or the right ventricle.

  5. This interactive 3D Echo Box has been designed to help echocardiographers and cardiac surgeons, but also clinical cardiologists, to interpret 3 Dimensional Echocardiography images and derive information useful to manage their patients.

  6. The 3-dimensional (3D) echocardiographyderived virtual reality images of a patient with a bioprosthetic mitral valve (MV) who subsequently underwent transcatheter mitral valve replacement (TMVR).

  7. TrueVue photorealistic imaging in 3D echocardiography can enhance the interpretation of structural heart disease images and improve communication within the heart team.

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