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| 003 | ES-VaUE | ||
| 005 | 20210513171344.0 | ||
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| 007 | cr |n||||||||| | ||
| 008 | 201022s2020 xx o 0|| 0 eng d | ||
| 017 | _a1204142974 | ||
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_a9789811569579 ( _q) ( _qelectronic bk.) |
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_aYDX _beng _cYDX _dEBLCP _dUKAHL |
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_aRC667 _b.Y36 2021 EB |
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| 245 | 0 | 0 |
_aCardiovascular 3D Printing _btechniques and clinical application _cJian Yang, Alex Pui-Wai Lee, Vladimiro L. Vida |
| 250 | _a1st ed. 2021 | ||
| 260 |
_aCham _bSpringer _c2021 |
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| 300 | _a1 online resource | ||
| 336 |
_2rdacontent _aTexto (visual) _btxt |
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_2rdamedia _aelectrónico _bc |
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_2rdacarrier _arecurso electrónico _bcr |
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| 505 | 0 | _aIntro -- Foreword -- Preface -- Disclosure -- Contents -- Editors and Contributors -- Editors -- Contributors -- 1: History of Cardiovascular 3D Printing -- References -- 2: The Methods of Cardiovascular 3D Printing -- 2.1 Acquisition of Cardiovascular Imaging Data -- 2.1.1 Computed Tomography Angiography (CTA) -- 2.1.2 3D Echocardiography -- 2.1.3 Cardiac Magnetic Resonance -- 2.2 Model Reconstruction and Postprocessing -- 2.2.1 Model Reconstruction of Cardiovascular 3d Printing -- 2.2.2 Postprocessing -- 2.3 3D Printing Technology of Cardiovascular Models | |
| 505 | 8 | _a2.3.1 Fused Deposition Modeling (FDM) -- 2.3.2 Selective Laser Sintering (SLS) -- 2.3.3 Color Inkjet Printing (CJP) -- 2.3.4 Stereolithography (SLA) -- 2.3.5 Material Jetting (MJ) -- 2.4 Scientific Selection of 3D Printers -- References -- 3: Selection of Cardiovascular 3D Printing Materials -- 3.1 Synthetic Materials -- 3.1.1 Commercial Material System -- 3.1.2 Elastomers -- 3.1.3 Layer Materials -- 3.1.4 3D Printing Actuator -- 3.2 Bio-Printing Materials -- 3.2.1 Characteristics of Bio-Ink -- 3.2.2 Bio-Ink -- 3.2.3 Natural Bio-Ink -- 3.2.4 Synthetic Bio-Ink -- 3.3 Summary | |
| 505 | 8 | _a5.1.2 Application of 3D Printing Technology in Interventional Treatment of CHDs -- 5.2 3D Printing of Prenatal Heart Disease -- 5.3 3D Printing Protocol in Prenatal Diagnosis -- 5.3.1 Image Acquisition, Segmentation, and Model Design -- 5.3.2 Applications of 3D-Printed Models of CHD in Prenatal Diagnosis [1, 29, 57, 58] -- References -- Section 5.1 -- Section 5.2 -- 6: Valvular Disease and Three-Dimensional Printing -- 6.1 Transcatheter Aortic Valve Replacement and Three-Dimensional Printing -- 6.1.1 Pathophysiology of Aortic Stenosis -- 6.1.2 Pathophysiology of Aortic Insufficiency | |
| 505 | 8 | _a6.1.3 Anatomy of the Aortic Root and Aortic Valve -- 6.1.3.1 Aortic Root -- 6.1.3.2 Aortic Valve Leaflet and Sinus -- 6.1.3.3 Aortic Annulus and Transcatheter Aortic Valve Replacement of a Virtual Annulus in the Aortic Root -- 6.1.4 Transcatheter Aortic Valve -- 6.1.5 Advantages of Three-Dimensional Printing in Transcatheter Aortic Valve Replacement -- 6.1.5.1 Evaluation of Paravalvular Leakage -- 6.1.5.2 Prediction of the Possibility of Conduction Block -- 6.1.5.3 Acute and Delayed Coronary Artery Occlusion -- 6.1.5.4 Treatment of a Bicuspid Aortic Valve | |
| 655 | 0 | _aElectronic books | |
| 776 | 0 | 8 |
_cOriginal _z9811569568 _z9789811569562 _w(OCoLC)1158203106 |
| 856 | 4 | 0 |
_uhttps://go.openathens.net/redirector/universidadeuropea.es?url=https://doi.org/10.1007/978-981-15-6957-9 _zAcceso a este recurso digital (usuarios Universidad Europea de Valencia) |
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