Date of download: 5/27/2016 Copyright © The American College of Cardiology. All rights reserved. From: Transcatheter Valve-in-Valve and Valve-in-Ring for.

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Date of download: 5/27/2016 Copyright © The American College of Cardiology. All rights reserved. From: Transcatheter Valve-in-Valve and Valve-in-Ring for Treating Aortic and Mitral Surgical Prosthetic Dysfunction J Am Coll Cardiol. 2015;66(18): doi: /j.jacc Dimensions and Design Characteristics of a Stented Bioprosthetic Valve (Left) Carpentier-Edwards Perimount Magna Ease aortic valve (Edwards Lifesciences, Irvine, California). (Middle, Right) Computed tomography images of the Carpentier-Edwards Perimount Magna Ease aortic valve. Figure Legend:

Date of download: 5/27/2016 Copyright © The American College of Cardiology. All rights reserved. From: Transcatheter Valve-in-Valve and Valve-in-Ring for Treating Aortic and Mitral Surgical Prosthetic Dysfunction J Am Coll Cardiol. 2015;66(18): doi: /j.jacc Valve-in-Valve: Failure of Bioprosthesis Valves and Transcatheter Options for High-Risk Patients Incidence of bioprosthesis valve dysfunction and transcatheter aortic valve-in-valve and valve-in-ring as alternative treatments in those patients at high or prohibitive surgical risk. Aspects of the main pre-procedural evaluation, risks, and results of transcatheter treatment of aortic and mitral bioprosthesis dysfunction are shown. Figure Legend:

Date of download: 5/27/2016 Copyright © The American College of Cardiology. All rights reserved. From: Transcatheter Valve-in-Valve and Valve-in-Ring for Treating Aortic and Mitral Surgical Prosthetic Dysfunction J Am Coll Cardiol. 2015;66(18): doi: /j.jacc Rates of Reintervention Over Time in Aortic and Mitral Surgical Bioprostheses (A) Age and probability of explant owing to structural valve deterioration (SVD) of aortic bioprosthetic surgical heart valves. Patients are grouped according to age range. Adapted with permission from Johnston et al. (26). (B) Actuarial freedom from explant because of SVD of bioprosthetic mitral surgical heart valves, stratified by age groups. Figure Legend:

Date of download: 5/27/2016 Copyright © The American College of Cardiology. All rights reserved. From: Transcatheter Valve-in-Valve and Valve-in-Ring for Treating Aortic and Mitral Surgical Prosthetic Dysfunction J Am Coll Cardiol. 2015;66(18): doi: /j.jacc Transcatheter Valves Used for Valve-in-Valve Procedures (A) Edwards SAPIEN XT (Edwards Lifesciences, Irvine, California); (B) SAPIEN 3 (Edwards Lifesciences, Irvine, California); (C) Lotus (Boston Scientific Inc, Natick, Massachusetts); (D) Inovare valve (Braile Biomedica Inc, São José do Rio Preto, Brazil); (E) Melody (Medtronic, Minneapolis, Minnesota); (F) Direct Flow (Direct Flow Medical Inc, Santa Rosa, California); (G) CoreValve (Medtronic, Minneapolis, Minnesota); (H) Evolut R (Medtronic, Minneapolis, Minnesota); (I) Acurate TA system (Symetis Inc, Écublens, Switzerland); (J) Engager (Medtronic, Minneapolis, Minnesota); (K) Portico (St. Jude Medical Inc., St. Paul, Minnesota); (L) JenaValve (JenaValve Inc, Munich, Germany). Valves A to F have been used for both aortic and mitral valve-in-valve procedures. Valves G to L have been used only for aortic valve-in-valve cases. Figure Legend:

Date of download: 5/27/2016 Copyright © The American College of Cardiology. All rights reserved. From: Transcatheter Valve-in-Valve and Valve-in-Ring for Treating Aortic and Mitral Surgical Prosthetic Dysfunction J Am Coll Cardiol. 2015;66(18): doi: /j.jacc Examples of Aortic Valve-in-Valve Cases (A) Pre-procedural fluoroscopic image of a failing 21-mm Sorin Mitroflow surgical heart valve (SHV) (Sorin, Milan, Italy). (B) Final position of a 23-mm CoreValve EvolutR (Medtronic, Minneapolis, Minnesota) implanted via transfemoral approach. (C) Pre- procedural fluoroscopic image of a degenerated 23-mm Sorin Mitroflow. (D) Final position of a 23-mm SAPIEN XT (Edwards Lifesciences, Irvine, California) implanted within the SHV through a transfemoral approach. (E) Fluoroscopic image of a degenerated 27-mm Carpentier-Edwards Magna (Edwards Lifesciences, Irvine, California). (F) Post-procedural fluoroscopic image showing a 29- mm St. Jude Portico (St. Jude Medical Inc, St. Paul, Minnesota) inside the failing SHV. (G) Pre-procedural aortogram showing a failing stentless 23-mm Medtronic Freestyle valve with severe aortic regurgitation. (H) Post-procedural aortogram showing the final position of the 23 mm SAPIEN XT transcatheter heart valve inside the stentless SHV. Note the absence of aortic regurgitation. Figure Legend:

Date of download: 5/27/2016 Copyright © The American College of Cardiology. All rights reserved. From: Transcatheter Valve-in-Valve and Valve-in-Ring for Treating Aortic and Mitral Surgical Prosthetic Dysfunction J Am Coll Cardiol. 2015;66(18): doi: /j.jacc Incidence of Severe PPM After Valve-in-Valve Procedures Incidence of severe prosthesis-patient mismatch (PPM) following aortic valve-in-valve procedures, according to valve type (A) and the main mechanism of surgical valve failure (B)(10). Figure Legend:

Date of download: 5/27/2016 Copyright © The American College of Cardiology. All rights reserved. From: Transcatheter Valve-in-Valve and Valve-in-Ring for Treating Aortic and Mitral Surgical Prosthetic Dysfunction J Am Coll Cardiol. 2015;66(18): doi: /j.jacc Rate of High Transvalvular Gradients Following Aortic Valve-in-Valve Procedures Rate of transvalvular gradients ≥20 mm Hg following aortic valve-in-valve procedures, according to surgical bioprosthesis size (10). Figure Legend:

Date of download: 5/27/2016 Copyright © The American College of Cardiology. All rights reserved. From: Transcatheter Valve-in-Valve and Valve-in-Ring for Treating Aortic and Mitral Surgical Prosthetic Dysfunction J Am Coll Cardiol. 2015;66(18): doi: /j.jacc Mortality Rates at 1-Year Follow-Up After Aortic Valve-in-Valve Procedures Mortality rates following aortic valve-in-valve procedures, according to the main mechanism of surgical valve dysfunction (A), surgical valve size (B), and type of transcatheter valve (C). Figure Legend:

Date of download: 5/27/2016 Copyright © The American College of Cardiology. All rights reserved. From: Transcatheter Valve-in-Valve and Valve-in-Ring for Treating Aortic and Mitral Surgical Prosthetic Dysfunction J Am Coll Cardiol. 2015;66(18): doi: /j.jacc Examples of Mitral Valve-in-Valve and Valve-in-Ring Procedures (A) Fluoroscopic image of a 28-mm Edwards Physio 1 ring (Edwards Lifesciences, Irvine, California). (B) Final fluoroscopic image after the implantation of a 23-mm Edwards Sapien XT transcatheter heart valve inside the ring (valve-in-ring procedure) via a transapical approach. (C) Fluoroscopic image of a failing 23-mm Mosaic valve (Medtronic, Minneapolis, Minnesota) in the mitral position. (D) Post-procedural fluoroscopic image showing a 23-mm Edwards Sapien XT transcatheter heart valve implanted within the SHV through a transapical route. Figure Legend:

Date of download: 5/27/2016 Copyright © The American College of Cardiology. All rights reserved. From: Transcatheter Valve-in-Valve and Valve-in-Ring for Treating Aortic and Mitral Surgical Prosthetic Dysfunction J Am Coll Cardiol. 2015;66(18): doi: /j.jacc Day Outcomes After Mitral Valve-in-Valve and Mitral Valve-in-Ring Procedures Thirty-day rates of death, major stroke, mitral regurgitation ≥ moderate (MR), and left ventricular outflow tract (LVOT) obstruction following transcatheter mitral valve-in-valve (n = 349) and valve-in-ring (n = 88) procedures (45). Figure Legend: