8 5 f steerable sheaths Search Results


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Oscor Inc 8 5 f steerable guiding sheath
Hybrid Transcatheter-Minimally Invasive Endoscopic Retrieval of an Embolized Atrial Septal Defect Occluder (A1) Baseline fluoroscopy showing the 26-mm Amplatzer atrial septal defect (ASD) occluder (Abbott Structural Heart) projecting over the main pulmonary artery (PA). (A2) Engagement of the right PA with a 5-F angled pigtail catheter introduced through an 11-F right internal jugular sheath. (A3) Advancement of an Amplatz Super Stiff J-tip guidewire (Boston Scientific) through the pigtail catheter, enabling exchange <t>to</t> <t>an</t> <t>8.5-F</t> steerable guiding sheath (Oscor). (A4) Introduction of a 7-F 3D EnSnare system (Merit Medical) via a 7-F multipurpose catheter through the steerable sheath. Initial snaring of one device pin was successful, but in-sheath slenderizing failed, and the occluder re-embolized to the PA bifurcation (not shown). (A5) Repeat snaring was achieved; however, coaxial alignment and slenderizing remained unsuccessful. (A6) The snared device was mobilized en bloc with the multipurpose catheter and steerable sheath and intentionally parked in the right ventricle. (B1) After establishing cardiopulmonary bypass via percutaneous femoral cannulation with a dual-stage venous cannula (white asterisk), minimally invasive endoscopic access was obtained through a right lateral microthoracotomy. Following cardioplegic arrest and right atriotomy, the parked occluder (white star) is visualized through the tricuspid valve. Left ventricular venting is performed via the ASD using a sump catheter (white arrow). (B2) Release of the EnSnare from the occluder pin (white star) and freeing of the device from the tricuspid subvalvular apparatus. (B3) Endoscopic extraction of the embolized device. (B4) Exposure of the ASD facilitated by anterior suspension of the venous cannula, followed by surgical patch repair. (B5) Endoscopic view after completion of the ASD patch repair. (B6) Transesophageal echocardiography confirming complete closure without residual shunting on color Doppler.
8 5 F Steerable Guiding Sheath, supplied by Oscor Inc, 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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Average 86 stars, based on 1 article reviews
8 5 f steerable guiding sheath - by Bioz Stars, 2026-09
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Hybrid Transcatheter-Minimally Invasive Endoscopic Retrieval of an Embolized Atrial Septal Defect Occluder (A1) Baseline fluoroscopy showing the 26-mm Amplatzer atrial septal defect (ASD) occluder (Abbott Structural Heart) projecting over the main pulmonary artery (PA). (A2) Engagement of the right PA with a 5-F angled pigtail catheter introduced through an 11-F right internal jugular sheath. (A3) Advancement of an Amplatz Super Stiff J-tip guidewire (Boston Scientific) through the pigtail catheter, enabling exchange to an 8.5-F steerable guiding sheath (Oscor). (A4) Introduction of a 7-F 3D EnSnare system (Merit Medical) via a 7-F multipurpose catheter through the steerable sheath. Initial snaring of one device pin was successful, but in-sheath slenderizing failed, and the occluder re-embolized to the PA bifurcation (not shown). (A5) Repeat snaring was achieved; however, coaxial alignment and slenderizing remained unsuccessful. (A6) The snared device was mobilized en bloc with the multipurpose catheter and steerable sheath and intentionally parked in the right ventricle. (B1) After establishing cardiopulmonary bypass via percutaneous femoral cannulation with a dual-stage venous cannula (white asterisk), minimally invasive endoscopic access was obtained through a right lateral microthoracotomy. Following cardioplegic arrest and right atriotomy, the parked occluder (white star) is visualized through the tricuspid valve. Left ventricular venting is performed via the ASD using a sump catheter (white arrow). (B2) Release of the EnSnare from the occluder pin (white star) and freeing of the device from the tricuspid subvalvular apparatus. (B3) Endoscopic extraction of the embolized device. (B4) Exposure of the ASD facilitated by anterior suspension of the venous cannula, followed by surgical patch repair. (B5) Endoscopic view after completion of the ASD patch repair. (B6) Transesophageal echocardiography confirming complete closure without residual shunting on color Doppler.

Journal: JACC Case Reports

Article Title: Hybrid Transcatheter and Endoscopic Retrieval of a Pulmonary Artery–Embolized ASD Occluder in Hemodynamic Compromise

doi: 10.1016/j.jaccas.2026.107553

Figure Lengend Snippet: Hybrid Transcatheter-Minimally Invasive Endoscopic Retrieval of an Embolized Atrial Septal Defect Occluder (A1) Baseline fluoroscopy showing the 26-mm Amplatzer atrial septal defect (ASD) occluder (Abbott Structural Heart) projecting over the main pulmonary artery (PA). (A2) Engagement of the right PA with a 5-F angled pigtail catheter introduced through an 11-F right internal jugular sheath. (A3) Advancement of an Amplatz Super Stiff J-tip guidewire (Boston Scientific) through the pigtail catheter, enabling exchange to an 8.5-F steerable guiding sheath (Oscor). (A4) Introduction of a 7-F 3D EnSnare system (Merit Medical) via a 7-F multipurpose catheter through the steerable sheath. Initial snaring of one device pin was successful, but in-sheath slenderizing failed, and the occluder re-embolized to the PA bifurcation (not shown). (A5) Repeat snaring was achieved; however, coaxial alignment and slenderizing remained unsuccessful. (A6) The snared device was mobilized en bloc with the multipurpose catheter and steerable sheath and intentionally parked in the right ventricle. (B1) After establishing cardiopulmonary bypass via percutaneous femoral cannulation with a dual-stage venous cannula (white asterisk), minimally invasive endoscopic access was obtained through a right lateral microthoracotomy. Following cardioplegic arrest and right atriotomy, the parked occluder (white star) is visualized through the tricuspid valve. Left ventricular venting is performed via the ASD using a sump catheter (white arrow). (B2) Release of the EnSnare from the occluder pin (white star) and freeing of the device from the tricuspid subvalvular apparatus. (B3) Endoscopic extraction of the embolized device. (B4) Exposure of the ASD facilitated by anterior suspension of the venous cannula, followed by surgical patch repair. (B5) Endoscopic view after completion of the ASD patch repair. (B6) Transesophageal echocardiography confirming complete closure without residual shunting on color Doppler.

Article Snippet: Hybrid Transcatheter-Minimally Invasive Endoscopic Retrieval of an Embolized Atrial Septal Defect Occluder (A1) Baseline fluoroscopy showing the 26-mm Amplatzer atrial septal defect (ASD) occluder (Abbott Structural Heart) projecting over the main pulmonary artery (PA). (A2) Engagement of the right PA with a 5-F angled pigtail catheter introduced through an 11-F right internal jugular sheath. (A3) Advancement of an Amplatz Super Stiff J-tip guidewire (Boston Scientific) through the pigtail catheter, enabling exchange to an 8.5-F steerable guiding sheath (Oscor). (A4) Introduction of a 7-F 3D EnSnare system (Merit Medical) via a 7-F multipurpose catheter through the steerable sheath.

Techniques: Extraction, Suspension