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Interventions in structural, valvular, and congenital heart disease, second edition

Tác giả: Sievert, Horst; Qureshi, Shakeel A.; Wilson, Neil; Hijazi, Ziyad M.

Chủ đề:

Chủ đề: Medicine; Congenital Heart Disease; Structure; Valvule

Nhà xuất bản: CRC Press

Năm xuất bản: 2015

Loại tài liệu: Book

Mô tả vật lý: 1003 p.

Định danh: 978-1-4822-1564-9

Ngôn ngữ: en

 Đọc trực tuyến

 Tải tài liệu
At one time, many children born with congenital heart disease (CHD) suffered from issues that carried fatal prognoses. But that's changing, thanks to technological advances. Interventions in Structural, Valvular, and Congenital Heart Disease, Second Edition guides you throught the interventional treatment of congenital, valvular, and structural heart disease in the children and adults. The book emphasizes the practical aspects of procedures and covers other important areas such as indications and patient selection, potential pitfalls, and complications. See What's New in the Second Edition: Contributions from new authors who are pioneers in structural interventions in adults and transcatheter aortic valve replacement Expanded emphasis on the importance of imaging alongside the technical details of equipment and its safe and effective delivery Coverage of emerging techniques at the forefront of interventional treatment such as fetal interventions, hybrid procedures, and mitral valve repair Greater understanding, technical knowhow, and wider availability of catheters, balloons, delivery systems, and devices have spread intervention into the realm of acquired valve disease, degenerative disease of the aorta, paravalve leakage, postinfarction ventricular septal defects, and closure of the left atrial appendage. The book draws together expert interventionists from throughout the world to present approaches to congenital and structural heart disease that results in better outcomes for patients.

  • Cover
  • Title page
  • Copyright 2015
  • Contents
  • Preface to the Second Edition
  • Video Contents
  • 1. How to design and operate a congenital structural catheterization laboratory
  • 2. Operators credentials and institutional requirements for congenital and structural heart disease
  • 3. Angiography
  • 4. Hemodynamics
  • 5. Transesophageal 2D and 3D echocardiographic guidance
  • 6. Intracardiac echocardiography (ICE)
  • 7. Intracardiac echocardiography by Ultra ICE
  • 8. Cardiac computed tomography and magnetic resonance imaging in the cath-lab
  • 9. Ultrasound guidance
  • 10. Percutaneous transfemoral accesswith big sheaths
  • 11. Percutaneous subclavian access
  • 12. Access from the common carotid artery
  • 13. Transhepatic access
  • 14. Transseptal left heart catheterization
  • 15. Percutaneous transapical access
  • 16. Recanalization methods for postcatheter vessel occlusion
  • 17. Transpericardial access
  • 18. Surgical access (transapical, transatrial,transaortic, femoral, subclavian)
  • 19. Fetal cardiac interventions
  • 20. Special considerations in small children and newborns
  • 21. Congenital aortic valve stenosis: Background and valvuloplasty in children and adults
  • 22. Congenital aortic valve stenosis: Special considerations in neonates
  • 23. Aortic stenosis in the elderly: Background, indication for transcatheter treatment, and clinical trial results
  • 24. Aortic valve stenosis in the elderly: Balloon aortic valvuloplasty
  • 25. Aortic valve stenosis in the elderly: Transcatheter aortic valve implantation„Edwards SAPIEN valve
  • 26. Aortic valve stenosis in the elderly: Transcatheter aortic valve implantation„CoreValve
  • 27. Aortic valve stenosis in the elderly:Valve-in-valve implantations
  • 28. Aortic valve stenosis in the elderly: New percutaneous aortic valves
  • 29. Aortic valve stenosis in the elderly: Embolic protection during transcatheter aortic valve implantation
  • 30. Pulmonary valve disease: Pulmonary regurgitation„Background, indicationsfor treatment, and clinical trial results
  • 31. Pulmonary valve disease: Pulmonary valve stenosis
  • 32. Pulmonary valve disease: Pulmonary atresia
  • 33. Pulmonary valve disease: Pulmonary valve incyanotic heart defects with pulmonary oligemia
  • 34. Pulmonary valve disease: Transcatheter pulmonary valve implantation with the Melody valve
  • 35. Pulmonary valve disease: Transcatheter pulmonary valve implantation with the Edwards SAPIEN valve
  • 36. Pulmonary valve disease: New percutaneous pulmonary valves
  • 37. Mitral and tricuspid valve stenosis: Percutaneous mitral valvuloplasty
  • 38. Mitral and tricuspid valve stenosis: Percutaneous tricuspid valvuloplasty
  • 39. Mitral valve insufficiency: Background and indications for treatment
  • 40. Mitral valve insufficiency: Mitral valve repair with the MitraClip
  • 41. Mitral valve insufficiency: Other new mitral valve repair techniques
  • 42. Mitral valve insufficiency: Transcatheter mitral valve implantatio
  • 43. Tricuspid valve insufficiency: Background and indications for treatment
  • 44. Tricuspid valve insufficiency: Melody valvein the tricuspid position
  • 45. Tricuspid valve insufficiency: SAPIEN valvein the tricuspid position
  • 46. Tricuspid valve insufficiency: Percutaneous caval stent valve implantation for treatment of tricuspid insufficiency
  • 47. Tricuspid valve insufficiency: Catheter closure of paravalvular leaks
  • 48. Tricuspid valve insufficiency: Catheter closure of perforated sinus of Valsalva
  • 49. Atrial septal defect: Background and indications for ASD closure
  • 50. Atrial septal defect: Amplatzer- type ASD occluders
  • 51. The Figulla-Occlutech device
  • 52. The Cera Lifetech device
  • 53. ASD-R PFM device
  • 54. Cocoon device
  • 55. Starway device
  • 56. Atrial septal defect: Cardia ASD occluder
  • 57. Atrial septal defect: Complications of device closure of ASDs
  • 58. Patent foramen ovale closure: Background, indications for closure, and clinical trial results
  • 59. Patent foramen ovale closure: Amplatzer-type PFO occluders
  • 60. Disorders of the atrial septum: Closure with HELEX or Gore septal occluder
  • 61. Patent foramen ovale closure: Premereseptal occluder
  • 62. Patent foramen ovale closure: PFM PFO occluder
  • 63. Patent foramen ovale closure: CoherexFlatStent occluder
  • 64. Patent foramen ovale closure: SeptRx occluder
  • 65. Patent foramen ovale closure: Suture-based PFO closure
  • 66. Patent foramen ovale closure: Other new PFOclosure techniques
  • 67. Patent foramen ovale closure: Complications of device closure of PFOs
  • 68. Ventricular septal defect closure: Background, indications for closure, and clinical trial results
  • 69. Ventricular septal defect closure: Closure of congenital muscular VSD using the Amplatzer-type muscular VSD occluders
  • 70. Ventricular septal defect closure: Closure of perimembranous VSD using Amplatzer-typeoccluders
  • 71. Ventricular septal defect closure: Closure of perimembranous VSD using PFM coil
  • 72. Ventricular septal defect closure: Postmyocardial and postsurgery VSDs
  • 73. Patent ductus arteriosus (PDA): Background and indications for closure
  • 74. Patent ductus arteriosus (PDA): PDA occlusion with the Amplatzer-type devices
  • 75. Patent ductus arteriosus (PDA): PDA occlusion with coils
  • 76. Patent ductus arteriosus (PDA): Aortopulmonary window
  • 77. Systemic arteriovenous fistulas
  • 78. Pulmonary arteriovenous fistulas
  • 79. Coronary artery fistulas
  • 80. Obstructions of the inferior and superior vena cava
  • 81. Right ventricular outflow tract obstruction
  • 82. Pulmonary artery stenosis
  • 83. Pulmonary vein stenosis
  • 84. Balloon dilation of aortic coarctation and recoarctation
  • 85. Stenting in aortic coarctation and transversearch/isthmus hypoplasia
  • 86. Middle aortic syndrome
  • 87. Catheter intervention for hypertrophicobstructive cardiomyopathy
  • 88. Hypertrophic obstructive cardiomyopathy:Radio-frequency septal reduction
  • 89. Thoracic aortic aneurysms
  • 90. A hybrid strategy for the initial management of hypoplastic left heart syndrome: Technical considerations
  • 92. Intraoperative VSD device closure
  • 93. Intraoperative stent implantation
  • 94. Background, indication for LAA closure, and clinical trial results
  • 95. Amplatzer cardiac plug
  • 96. Watchman device
  • 97. Coherex WaveCrest
  • 98. Sentre heart
  • 99. Other new endocardial and epicardial techniques
  • 100. Extracorporeal ventricular assist devices
  • 101. Left ventricular partitioning with the cardiokinetics device
  • 102. Implantable assist devices for heart failure treatment
  • 103. Devices for hemodynamic monitoring
  • 104. Neurohumoral remodeling for treatmentnof hypertension and heart failure
  • 105. Catheter retrieval of intracardiac masses
  • 106. How to avoid and manage major complications
  • Index

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