By Takahiro Shiota
"Dr. Shiota's hugely illustrated textual content offers the definitive perspective at the advantages of using 3D echocardiography. during this quantity, across the world well-known specialists percentage the fundamental evidence of 3D ultrasound, in addition to their own scientific adventure within the cardiology box. Reflecting the most recent know-how in 3D echocardiographic imaging, this resource presents optimum illustrations demonstrating the most modern advances in diagnostic know-how. subject matters contain 3D echocardiography in cardiac resynchronization remedy, 3D overview of cardiac movement and deformation, and review of tricuspid valve morphology and serve as by means of transthoracic 3D echocardiography"--Provided through publisher. Read more...
summary: "Dr. Shiota's hugely illustrated textual content presents the definitive standpoint at the merits of using 3D echocardiography. during this quantity, the world over famous specialists percentage the elemental evidence of 3D ultrasound, in addition to their own medical adventure within the cardiology box. Reflecting the newest expertise in 3D echocardiographic imaging, this resource presents most useful illustrations demonstrating the newest advances in diagnostic know-how. themes contain 3D echocardiography in cardiac resynchronization remedy, 3D evaluation of cardiac movement and deformation, and assessment of tricuspid valve morphology and serve as by way of transthoracic 3D echocardiography"--Provided through writer
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Extra resources for 3D Echocardiography
A new, simpliﬁed and accurate method for determining ejection fraction with two-dimensional echocardiography. Circulation. 1981; 64: 744–53. Teichholz LE, Kreulen T, Herman MV, et al. Problems in echocardiographic volume determinations: Echocardiographicangiographic correlations in the presence of absence of asynergy. Am J Cardiol. 1976; 37: 7–11. Lang RM, Bierg M, Devereux RB, et al. Recommendations for chamber quantiﬁcation: A report from the American Society of Echocardiography’s guidelines and standards committee and the chamber quantiﬁcation writing group, developed in conjunction with the European Association of Echocardiography, a Branch of the European Society of Cardiology.
J Am Coll Cardiol. 2004; 44: 878–86. Gutiérrez-Chico JL, Zamorano JL, Pérez de Isla L, et al. Comparison of left ventricular volumes and ejection fractions measured by three-dimensional echocardiography versus by two-dimensional echocardiography and cardiac magnetic resonance in patients with various cardiomyopathies. Am J Cardiol. 2005; 95: 809–13. Sugeng Li, Mor-Avi V, Weinert L, et al. Quantitative assessment of left ventricular size and function side-by-side comparison of real-time three-dimensional echocardiography and computed tomography with magnetic resonance reference.
8). 6 Calculation of left ventricular (LV) volume using summation-of-disks methods in 3D echocardiography. (A) In the long-axis cross-sectional views reconstructed from the cubic data set, the level of the short-axis cross section was determined by the line shown in the ﬁgure. (B) Endocardial border is traced in each short-axis cross-sectional view at end diastole or end systole. (C) Wire-frame model of the left ventricle at end diastole or end systole is demonstrated after the summation of tracing of LV endocardial border in every short-axis cross sections.
3D Echocardiography by Takahiro Shiota