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Abbott Laboratories amplatzer ii plug
Amplatzer Ii Plug, supplied by Abbott Laboratories, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/plug/amplatzer+ii+plug+vascular/pmc13264216-36-14-17
Average 86 stars, based on 1 article reviews
amplatzer ii plug - by Bioz Stars, 2026-09
86/100 stars

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Article Title: Endovascular techniques for the treatment of true renal arterial aneurysms—procedural insights and outcomes
Article Snippet: The single case treated with vascular plug (AmplatzerTM Vascular Plug 4, Abbott) placement in the main artery proximal to the TRAA was for the single case of a Type 1 Rundback TRAA.

Article Title: Endovascular techniques for the treatment of true renal arterial aneurysms-procedural insights and outcomes.
Article Snippet: Plug placement in proximal main artery The single case treated with vascular plug (AmplatzerTM Vascular Plug 4, Abbott) placement in the main artery proximal to the TRAA was for the single case of a Type 1 Rundback TRAA.

Article Title: Postimplantation syndrome following stentless thoracic endovascular aortic repair of chronic aortic dissection
Article Snippet: An 8-mm plug (Amplatzer Vascular Plug 4; Abbott Vascular) was selected to close the intimal tear with 167% oversizing.

Article Title: Imaging biomarkers of liver hypertrophy after portal vein embolization in patients with liver tumors: cholestasis, arterial hyperperfusion, and splenic response.
Article Snippet: The vein was occluded with a vascular plug (Abbott, Chicago, Illinois, USA) positioned 1–2 cm proximal to the inferior vena cava, followed by embolization with a Histoacryl–Lipiodol mixture (1:2) during catheter withdrawal.

Article Title: Impact of Portal Hypertension on Adverse Events after Splenic Arterial Aneurysm Embolization.
Article Snippet: Ahsun Riaz, MD, Pouya Entezari, MD, Asad Malik, MD, Wali Badar, MD, Stephen Scheller, MD, Ahmed Gabr, MD, Bartley Thornburg, MD, Stephen Seedial, MD, Justin Boike, MD, Scott Resnick, MD, Kent Sato, MD, Daniela Ladner, MD, MPH, Christopher Moore, MD, Daniel Ganger, MD, James Donaldson, MD, Laura Kulik, MD, Robert J. Lewandowski, MD, Brian S. Funaki, MD, Osman Ahmed, MD, Juan Carlos Caicedo, MD, and Riad Salem, MD, MBA

Preserving:

Article Title: Biocompatibility of an apical ring plug for left ventricular assist device explantation: Results of a feasibility pre-clinical study.
Article Snippet: .. These include ventriculoplasty with removal of the apical ring or apical ring preservation and occlusion of the cored ventriculotomy with a metal plug, each with or without outflow graft removal8– 10 So far, a mechanical plug for LVAD explantation has been available for HeartMate II (Abbott, North Chicago, IL, USA) and HVAD (HeartWare Inc, Framingham, MA, USA).8,11 In 2018, a plug previously described for HVAD10 was adapted for use in HeartMate3 (Abbott, North Chicago, IL, USA) patients.12 In the same year, a novel custom- made apical ring plug (INNOVO Solutions GmbH, Wathlingen, Germany) for HeartMate3 explantation has been described by Ricklefs et al.13 Subsequently, this plug has been adapted to fit the HVAD apical ring as well. ..

Injection:

Article Title: Late Onset Hepatic Encephalopathy after Living Donor Liver Transplant: Successful Reversal by Plug Embolization of Shunt—A Report of Two Cases
Article Snippet: .. The benefits of the procedure and the risks involved, including worsening of portal hypertension, were explained to the family.2 The procedure was done uneventfully in the angiography suite and the shunt was obliterated with combination of a vascular plug (Amplatzer, Abbott, United States) andGelfoam injection (►Fig. ..



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Amplatzer Ii Plug, supplied by Abbott Laboratories, 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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Under intravascular ultrasound (IVUS) guidance, the dissection flap was punctured from the true lumen into the false lumen (FL) approximately 2 cm distal to the caudal end of the thoracic stent graft, and a Radifocus guidewire was advanced into the FL (A) . The fenestration was then dilated using an 8 mm × 4 cm balloon catheter (B) . The modified Excluder aortic extender (Ex-cuff) was deployed at the distal level of the thoracic stent graft (C) . Subsequently, a 16-mm <t>Amplatzer</t> Vascular Plug I, preloaded with a 2.2F microcatheter was deployed at the waist of the modified Ex-cuff (D) . The microcatheter was then withdrawn into the plug, and four detachable coils were placed within the plug (E and F) . Angiography revealed persistent perigraft leakage around the Ex-cuff (G) . Therefore, 33% n-butyl-2-cyanoacrylate (NBCA) was slowly injected, achieving complete occlusion (H) ( arrowhead , coil-in-plug; arrow , NBCA-Lipiodol). Completion angiography confirmed complete elimination of FL perfusion in the thoracic aortic segment (I) .
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Under intravascular ultrasound (IVUS) guidance, the dissection flap was punctured from the true lumen into the false lumen (FL) approximately 2 cm distal to the caudal end of the thoracic stent graft, and a Radifocus guidewire was advanced into the FL (A) . The fenestration was then dilated using an 8 mm × 4 cm balloon catheter (B) . The modified Excluder aortic extender (Ex-cuff) was deployed at the distal level of the thoracic stent graft (C) . Subsequently, a 16-mm <t>Amplatzer</t> Vascular Plug I, preloaded with a 2.2F microcatheter was deployed at the waist of the modified Ex-cuff (D) . The microcatheter was then withdrawn into the plug, and four detachable coils were placed within the plug (E and F) . Angiography revealed persistent perigraft leakage around the Ex-cuff (G) . Therefore, 33% n-butyl-2-cyanoacrylate (NBCA) was slowly injected, achieving complete occlusion (H) ( arrowhead , coil-in-plug; arrow , NBCA-Lipiodol). Completion angiography confirmed complete elimination of FL perfusion in the thoracic aortic segment (I) .
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Under intravascular ultrasound (IVUS) guidance, the dissection flap was punctured from the true lumen into the false lumen (FL) approximately 2 cm distal to the caudal end of the thoracic stent graft, and a Radifocus guidewire was advanced into the FL (A) . The fenestration was then dilated using an 8 mm × 4 cm balloon catheter (B) . The modified Excluder aortic extender (Ex-cuff) was deployed at the distal level of the thoracic stent graft (C) . Subsequently, a 16-mm <t>Amplatzer</t> Vascular Plug I, preloaded with a 2.2F microcatheter was deployed at the waist of the modified Ex-cuff (D) . The microcatheter was then withdrawn into the plug, and four detachable coils were placed within the plug (E and F) . Angiography revealed persistent perigraft leakage around the Ex-cuff (G) . Therefore, 33% n-butyl-2-cyanoacrylate (NBCA) was slowly injected, achieving complete occlusion (H) ( arrowhead , coil-in-plug; arrow , NBCA-Lipiodol). Completion angiography confirmed complete elimination of FL perfusion in the thoracic aortic segment (I) .
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Under intravascular ultrasound (IVUS) guidance, the dissection flap was punctured from the true lumen into the false lumen (FL) approximately 2 cm distal to the caudal end of the thoracic stent graft, and a Radifocus guidewire was advanced into the FL (A) . The fenestration was then dilated using an 8 mm × 4 cm balloon catheter (B) . The modified Excluder aortic extender (Ex-cuff) was deployed at the distal level of the thoracic stent graft (C) . Subsequently, a 16-mm <t>Amplatzer</t> Vascular Plug I, preloaded with a 2.2F microcatheter was deployed at the waist of the modified Ex-cuff (D) . The microcatheter was then withdrawn into the plug, and four detachable coils were placed within the plug (E and F) . Angiography revealed persistent perigraft leakage around the Ex-cuff (G) . Therefore, 33% n-butyl-2-cyanoacrylate (NBCA) was slowly injected, achieving complete occlusion (H) ( arrowhead , coil-in-plug; arrow , NBCA-Lipiodol). Completion angiography confirmed complete elimination of FL perfusion in the thoracic aortic segment (I) .
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(A) Final deployment of the physician-modified candy plug (CP) ( red arrows indicate the proximal and distal struts of the modified stent graft). An 18-mm <t>Amplatzer</t> Vascular Plug II is positioned within its constrained central lumen ( blue arrows indicate the proximal and distal nitinol mesh lobes). (B) Complete thrombosis of the false lumen (FL) with cessation of retrograde flow above the CP devices. The vascular plug within the physician-modified CP is indicated by the blue arrow . (C) Volume-rendering technique reconstruction demonstrating the thoracic endovascular repair (TEVAR) and CP devices.
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(A) Final deployment of the physician-modified candy plug (CP) ( red arrows indicate the proximal and distal struts of the modified stent graft). An 18-mm <t>Amplatzer</t> Vascular Plug II is positioned within its constrained central lumen ( blue arrows indicate the proximal and distal nitinol mesh lobes). (B) Complete thrombosis of the false lumen (FL) with cessation of retrograde flow above the CP devices. The vascular plug within the physician-modified CP is indicated by the blue arrow . (C) Volume-rendering technique reconstruction demonstrating the thoracic endovascular repair (TEVAR) and CP devices.
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(A) Final deployment of the physician-modified candy plug (CP) ( red arrows indicate the proximal and distal struts of the modified stent graft). An 18-mm <t>Amplatzer</t> Vascular Plug II is positioned within its constrained central lumen ( blue arrows indicate the proximal and distal nitinol mesh lobes). (B) Complete thrombosis of the false lumen (FL) with cessation of retrograde flow above the CP devices. The vascular plug within the physician-modified CP is indicated by the blue arrow . (C) Volume-rendering technique reconstruction demonstrating the thoracic endovascular repair (TEVAR) and CP devices.
Amplatzer Plug, supplied by Abbott Laboratories, 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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Image Search Results


Under intravascular ultrasound (IVUS) guidance, the dissection flap was punctured from the true lumen into the false lumen (FL) approximately 2 cm distal to the caudal end of the thoracic stent graft, and a Radifocus guidewire was advanced into the FL (A) . The fenestration was then dilated using an 8 mm × 4 cm balloon catheter (B) . The modified Excluder aortic extender (Ex-cuff) was deployed at the distal level of the thoracic stent graft (C) . Subsequently, a 16-mm Amplatzer Vascular Plug I, preloaded with a 2.2F microcatheter was deployed at the waist of the modified Ex-cuff (D) . The microcatheter was then withdrawn into the plug, and four detachable coils were placed within the plug (E and F) . Angiography revealed persistent perigraft leakage around the Ex-cuff (G) . Therefore, 33% n-butyl-2-cyanoacrylate (NBCA) was slowly injected, achieving complete occlusion (H) ( arrowhead , coil-in-plug; arrow , NBCA-Lipiodol). Completion angiography confirmed complete elimination of FL perfusion in the thoracic aortic segment (I) .

Journal: Journal of Vascular Surgery Cases, Innovations and Techniques

Article Title: Black candy-plug technique for a large false lumen in a patient with complicated type B aortic dissection

doi: 10.1016/j.jvscit.2026.102212

Figure Lengend Snippet: Under intravascular ultrasound (IVUS) guidance, the dissection flap was punctured from the true lumen into the false lumen (FL) approximately 2 cm distal to the caudal end of the thoracic stent graft, and a Radifocus guidewire was advanced into the FL (A) . The fenestration was then dilated using an 8 mm × 4 cm balloon catheter (B) . The modified Excluder aortic extender (Ex-cuff) was deployed at the distal level of the thoracic stent graft (C) . Subsequently, a 16-mm Amplatzer Vascular Plug I, preloaded with a 2.2F microcatheter was deployed at the waist of the modified Ex-cuff (D) . The microcatheter was then withdrawn into the plug, and four detachable coils were placed within the plug (E and F) . Angiography revealed persistent perigraft leakage around the Ex-cuff (G) . Therefore, 33% n-butyl-2-cyanoacrylate (NBCA) was slowly injected, achieving complete occlusion (H) ( arrowhead , coil-in-plug; arrow , NBCA-Lipiodol). Completion angiography confirmed complete elimination of FL perfusion in the thoracic aortic segment (I) .

Article Snippet: Subsequently, a 16-mm Amplatzer Vascular Plug I (Abbott), preloaded with a 2.2F-microcatheter (Coiling Support, HI-LEX Co) was delivered through a 6F guiding catheter (Destination; Terumo Medical Co) and deployed at the waist of the modified Ex-cuff ( , D ).

Techniques: Dissection, Modification, Injection

(A) Final deployment of the physician-modified candy plug (CP) ( red arrows indicate the proximal and distal struts of the modified stent graft). An 18-mm Amplatzer Vascular Plug II is positioned within its constrained central lumen ( blue arrows indicate the proximal and distal nitinol mesh lobes). (B) Complete thrombosis of the false lumen (FL) with cessation of retrograde flow above the CP devices. The vascular plug within the physician-modified CP is indicated by the blue arrow . (C) Volume-rendering technique reconstruction demonstrating the thoracic endovascular repair (TEVAR) and CP devices.

Journal: Journal of Vascular Surgery Cases, Innovations and Techniques

Article Title: Use of a physician-modified candy plug to rescue gutter leak arising from a collapsed candy plug

doi: 10.1016/j.jvscit.2026.102175

Figure Lengend Snippet: (A) Final deployment of the physician-modified candy plug (CP) ( red arrows indicate the proximal and distal struts of the modified stent graft). An 18-mm Amplatzer Vascular Plug II is positioned within its constrained central lumen ( blue arrows indicate the proximal and distal nitinol mesh lobes). (B) Complete thrombosis of the false lumen (FL) with cessation of retrograde flow above the CP devices. The vascular plug within the physician-modified CP is indicated by the blue arrow . (C) Volume-rendering technique reconstruction demonstrating the thoracic endovascular repair (TEVAR) and CP devices.

Article Snippet: The constrained central lumen of the physician-modified CP was plugged with an 18-mm Amplatzer Vascular Plug II (Abbott Vascular) ( , A ).

Techniques: Modification