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Boston Scientific Corporation acurate neo2 small
Preprocedural Multimodal Imaging for Simultaneous ViV-TAVR and Valve-in-Valve Transcatheter Mitral Valve Replacement Planning (A) Computed tomography imaging with measurements of the internal diameter of the bioprosthetic heart valve at aortic position. (B) Three-dimensional rendered images showing relationship of aortic annulus with aorto-mitral curtain (yellow arrow). (C) Simulated models with <t>ACURATE</t> <t>Neo2</t> small (Boston Scientific) virtual valve in aortic prosthesis showing low risk of coronary obstruction and easy access post valve-in-valve transcatheter aortic valve replacement (ViV-TAVR). (D and E) Simulated 29-mm SAPIEN S3 Ultra virtual valve in mitral prosthesis with depth estimation related to mitral annulus (red and white circle) to assess procedural feasibility, risk of LVOT obstruction, and distance in relation to the aortic annular plane (yellow circle). (F and G) Neo–left ventricular outflow tract measurements.
Acurate Neo2 Small, supplied by Boston Scientific Corporation, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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KaVo Dental manikin model kavo dental biberach germany
Preprocedural Multimodal Imaging for Simultaneous ViV-TAVR and Valve-in-Valve Transcatheter Mitral Valve Replacement Planning (A) Computed tomography imaging with measurements of the internal diameter of the bioprosthetic heart valve at aortic position. (B) Three-dimensional rendered images showing relationship of aortic annulus with aorto-mitral curtain (yellow arrow). (C) Simulated models with <t>ACURATE</t> <t>Neo2</t> small (Boston Scientific) virtual valve in aortic prosthesis showing low risk of coronary obstruction and easy access post valve-in-valve transcatheter aortic valve replacement (ViV-TAVR). (D and E) Simulated 29-mm SAPIEN S3 Ultra virtual valve in mitral prosthesis with depth estimation related to mitral annulus (red and white circle) to assess procedural feasibility, risk of LVOT obstruction, and distance in relation to the aortic annular plane (yellow circle). (F and G) Neo–left ventricular outflow tract measurements.
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Bigfoot Biomedical automated insulin delivery system
Preprocedural Multimodal Imaging for Simultaneous ViV-TAVR and Valve-in-Valve Transcatheter Mitral Valve Replacement Planning (A) Computed tomography imaging with measurements of the internal diameter of the bioprosthetic heart valve at aortic position. (B) Three-dimensional rendered images showing relationship of aortic annulus with aorto-mitral curtain (yellow arrow). (C) Simulated models with <t>ACURATE</t> <t>Neo2</t> small (Boston Scientific) virtual valve in aortic prosthesis showing low risk of coronary obstruction and easy access post valve-in-valve transcatheter aortic valve replacement (ViV-TAVR). (D and E) Simulated 29-mm SAPIEN S3 Ultra virtual valve in mitral prosthesis with depth estimation related to mitral annulus (red and white circle) to assess procedural feasibility, risk of LVOT obstruction, and distance in relation to the aortic annular plane (yellow circle). (F and G) Neo–left ventricular outflow tract measurements.
Automated Insulin Delivery System, supplied by Bigfoot Biomedical, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Dynamic Systems Inc gleeble 3800-gtc
Preprocedural Multimodal Imaging for Simultaneous ViV-TAVR and Valve-in-Valve Transcatheter Mitral Valve Replacement Planning (A) Computed tomography imaging with measurements of the internal diameter of the bioprosthetic heart valve at aortic position. (B) Three-dimensional rendered images showing relationship of aortic annulus with aorto-mitral curtain (yellow arrow). (C) Simulated models with <t>ACURATE</t> <t>Neo2</t> small (Boston Scientific) virtual valve in aortic prosthesis showing low risk of coronary obstruction and easy access post valve-in-valve transcatheter aortic valve replacement (ViV-TAVR). (D and E) Simulated 29-mm SAPIEN S3 Ultra virtual valve in mitral prosthesis with depth estimation related to mitral annulus (red and white circle) to assess procedural feasibility, risk of LVOT obstruction, and distance in relation to the aortic annular plane (yellow circle). (F and G) Neo–left ventricular outflow tract measurements.
Gleeble 3800 Gtc, supplied by Dynamic Systems Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Mannkind Inc technosphere
Preprocedural Multimodal Imaging for Simultaneous ViV-TAVR and Valve-in-Valve Transcatheter Mitral Valve Replacement Planning (A) Computed tomography imaging with measurements of the internal diameter of the bioprosthetic heart valve at aortic position. (B) Three-dimensional rendered images showing relationship of aortic annulus with aorto-mitral curtain (yellow arrow). (C) Simulated models with <t>ACURATE</t> <t>Neo2</t> small (Boston Scientific) virtual valve in aortic prosthesis showing low risk of coronary obstruction and easy access post valve-in-valve transcatheter aortic valve replacement (ViV-TAVR). (D and E) Simulated 29-mm SAPIEN S3 Ultra virtual valve in mitral prosthesis with depth estimation related to mitral annulus (red and white circle) to assess procedural feasibility, risk of LVOT obstruction, and distance in relation to the aortic annular plane (yellow circle). (F and G) Neo–left ventricular outflow tract measurements.
Technosphere, supplied by Mannkind Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/simulation+model+of+information+flows+transmission+in+manet/pmc05035370-160-9-18?v=Mannkind+Inc
Average 90 stars, based on 1 article reviews
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Image Search Results


Preprocedural Multimodal Imaging for Simultaneous ViV-TAVR and Valve-in-Valve Transcatheter Mitral Valve Replacement Planning (A) Computed tomography imaging with measurements of the internal diameter of the bioprosthetic heart valve at aortic position. (B) Three-dimensional rendered images showing relationship of aortic annulus with aorto-mitral curtain (yellow arrow). (C) Simulated models with ACURATE Neo2 small (Boston Scientific) virtual valve in aortic prosthesis showing low risk of coronary obstruction and easy access post valve-in-valve transcatheter aortic valve replacement (ViV-TAVR). (D and E) Simulated 29-mm SAPIEN S3 Ultra virtual valve in mitral prosthesis with depth estimation related to mitral annulus (red and white circle) to assess procedural feasibility, risk of LVOT obstruction, and distance in relation to the aortic annular plane (yellow circle). (F and G) Neo–left ventricular outflow tract measurements.

Journal: JACC Case Reports

Article Title: Live Hemodynamics-Assisted Simultaneous Aortic and Mitral Valve-in-Valve Replacement

doi: 10.1016/j.jaccas.2025.104345

Figure Lengend Snippet: Preprocedural Multimodal Imaging for Simultaneous ViV-TAVR and Valve-in-Valve Transcatheter Mitral Valve Replacement Planning (A) Computed tomography imaging with measurements of the internal diameter of the bioprosthetic heart valve at aortic position. (B) Three-dimensional rendered images showing relationship of aortic annulus with aorto-mitral curtain (yellow arrow). (C) Simulated models with ACURATE Neo2 small (Boston Scientific) virtual valve in aortic prosthesis showing low risk of coronary obstruction and easy access post valve-in-valve transcatheter aortic valve replacement (ViV-TAVR). (D and E) Simulated 29-mm SAPIEN S3 Ultra virtual valve in mitral prosthesis with depth estimation related to mitral annulus (red and white circle) to assess procedural feasibility, risk of LVOT obstruction, and distance in relation to the aortic annular plane (yellow circle). (F and G) Neo–left ventricular outflow tract measurements.

Article Snippet: Preprocedural Multimodal Imaging for Simultaneous ViV-TAVR and Valve-in-Valve Transcatheter Mitral Valve Replacement Planning (A) Computed tomography imaging with measurements of the internal diameter of the bioprosthetic heart valve at aortic position. (B) Three-dimensional rendered images showing relationship of aortic annulus with aorto-mitral curtain (yellow arrow). (C) Simulated models with ACURATE Neo2 small (Boston Scientific) virtual valve in aortic prosthesis showing low risk of coronary obstruction and easy access post valve-in-valve transcatheter aortic valve replacement (ViV-TAVR). (D and E) Simulated 29-mm SAPIEN S3 Ultra virtual valve in mitral prosthesis with depth estimation related to mitral annulus (red and white circle) to assess procedural feasibility, risk of LVOT obstruction, and distance in relation to the aortic annular plane (yellow circle). (F and G) Neo–left ventricular outflow tract measurements.

Techniques: Imaging, Computed Tomography

Fluoroscopic Images of Simultaneous ViV-TAVR and Valve-in-Valve Transcatheter Mitral Valve Replacement Procedure (A) VersaCross RF Pigtail wire placed in the left atrium following transseptal puncture using the VersaCross RF System. (B) Balloon predilation of aortic prosthesis with 18-mm Atlas Gold balloon. (C) Valve-in-valve transcatheter aortic valve replacement (ViV-TAVR) with ACURATE Neo2 small under left ventricular pacing with the SavvyWire followed by crossing of the mitral prosthesis under transesophageal echocardiography guidance to gain access to the left ventricle with stiff wire. (D) Keeping the SavvyWire in the left ventricle after ViV-TAVR for rapid pacing. (E) Interatrial septum predilation with a 16-mm Atlas Gold balloon. (F) Deployment of 29-mm SAPIEN S3 Ultra valve at nominal volume under rapid left ventricular pacing with the SavvyWire.

Journal: JACC Case Reports

Article Title: Live Hemodynamics-Assisted Simultaneous Aortic and Mitral Valve-in-Valve Replacement

doi: 10.1016/j.jaccas.2025.104345

Figure Lengend Snippet: Fluoroscopic Images of Simultaneous ViV-TAVR and Valve-in-Valve Transcatheter Mitral Valve Replacement Procedure (A) VersaCross RF Pigtail wire placed in the left atrium following transseptal puncture using the VersaCross RF System. (B) Balloon predilation of aortic prosthesis with 18-mm Atlas Gold balloon. (C) Valve-in-valve transcatheter aortic valve replacement (ViV-TAVR) with ACURATE Neo2 small under left ventricular pacing with the SavvyWire followed by crossing of the mitral prosthesis under transesophageal echocardiography guidance to gain access to the left ventricle with stiff wire. (D) Keeping the SavvyWire in the left ventricle after ViV-TAVR for rapid pacing. (E) Interatrial septum predilation with a 16-mm Atlas Gold balloon. (F) Deployment of 29-mm SAPIEN S3 Ultra valve at nominal volume under rapid left ventricular pacing with the SavvyWire.

Article Snippet: Preprocedural Multimodal Imaging for Simultaneous ViV-TAVR and Valve-in-Valve Transcatheter Mitral Valve Replacement Planning (A) Computed tomography imaging with measurements of the internal diameter of the bioprosthetic heart valve at aortic position. (B) Three-dimensional rendered images showing relationship of aortic annulus with aorto-mitral curtain (yellow arrow). (C) Simulated models with ACURATE Neo2 small (Boston Scientific) virtual valve in aortic prosthesis showing low risk of coronary obstruction and easy access post valve-in-valve transcatheter aortic valve replacement (ViV-TAVR). (D and E) Simulated 29-mm SAPIEN S3 Ultra virtual valve in mitral prosthesis with depth estimation related to mitral annulus (red and white circle) to assess procedural feasibility, risk of LVOT obstruction, and distance in relation to the aortic annular plane (yellow circle). (F and G) Neo–left ventricular outflow tract measurements.

Techniques: