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Expert Review of Medical Devices
|
June 26, 2014
Evaluation of the Diamondback 360 Coronary Orbital Atherectomy System for treating de novo, severely calcified lesions
Jeffrey W Chambers, Tiffini Diage
Catheterization and Cardiovascular Interventions : Official Journal of the Society for Cardiac Angiography & Interventions
|
July 26, 2022
Treatment of cardiac device-related infective endocarditis utilizing the new T20 curve catheter and flow saver with the Inari mechanical aspiration system
Matthew G Whitbeck, Jeffrey W Chambers
Catheterization and Cardiovascular Interventions : Official Journal of the Society for Cardiac Angiography & Interventions
|
July 1, 2020
Single-access during Impella hemodynamic support utilizing the Railway system
Matthew G Whitbeck, Jeffrey W Chambers
Cardiovascular Revascularization Medicine : Including Molecular Interventions
|
December 5, 2023
Techniques to overcome difficult delivery of the Impella CP device through a previously placed transcatheter aortic valve
Matthew G Whitbeck, Jeffrey W Chambers, Emmanouil Brilakis
Interventional Cardiology Clinics
|
June 6, 2017
Atherectomy Devices for the Treatment of Calcified Coronary Lesions
Jeffrey W Chambers, Ann N Behrens, Brad J Martinsen
Cardiovascular Revascularization Medicine : Including Molecular Interventions
|
February 18, 2018
Impact of age following treatment of severely calcified coronary lesions with the orbital atherectomy system: 3-year follow-up
Michael S Lee, Richard A Shlofmitz, Brad J Martinsen, et al.
Cardiovascular Revascularization Medicine : Including Molecular Interventions
|
September 12, 2018
Outcomes after Atherectomy Treatment of Severely Calcified Coronary Bifurcation Lesions: A Single Center Experience
Jeffrey W Chambers, Charles Warner, Josh Cortez, et al.
Cardiovascular Revascularization Medicine : Including Molecular Interventions
|
November 10, 2017
Orbital atherectomy treatment of severely calcified native coronary lesions in patients with prior coronary artery bypass grafting: Acute and one-year outcomes from the ORBIT II trial
Michael S Lee, Bynthia M Anose, Brad J Martinsen, et al.
Cardiovascular Revascularization Medicine : Including Molecular Interventions
|
February 5, 2020
Orbital Atherectomy for the Treatment of Long (≥25-40 mm) Severely Calcified Coronary Lesions: ORBIT II Sub-Analysis
Gautam Kumar, Eric Youngyoon Shin, Rajesh Sachdeva, et al.
Cardiovascular Revascularization Medicine : Including Molecular Interventions
|
September 24, 2018
Procedural and Long-Term Ischemic Outcomes of Tight Subtotal Occlusions Treated with Orbital Atherectomy: An ORBIT II Subanalysis
Michael S Lee, Richard A Shlofmitz, Evan Shlofmitz, et al.
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of 3
Search research articles
Search
Showing results (1-10 of 25) with videos related to
Sort By:
Page
of 3
Expert Review of Medical Devices
|
June 26, 2014
Evaluation of the Diamondback 360 Coronary Orbital Atherectomy System for treating de novo, severely calcified lesions
Jeffrey W Chambers, Tiffini Diage
Catheterization and Cardiovascular Interventions : Official Journal of the Society for Cardiac Angiography & Interventions
|
July 26, 2022
Treatment of cardiac device-related infective endocarditis utilizing the new T20 curve catheter and flow saver with the Inari mechanical aspiration system
Matthew G Whitbeck, Jeffrey W Chambers
Catheterization and Cardiovascular Interventions : Official Journal of the Society for Cardiac Angiography & Interventions
|
July 1, 2020
Single-access during Impella hemodynamic support utilizing the Railway system
Matthew G Whitbeck, Jeffrey W Chambers
Cardiovascular Revascularization Medicine : Including Molecular Interventions
|
December 5, 2023
Techniques to overcome difficult delivery of the Impella CP device through a previously placed transcatheter aortic valve
Matthew G Whitbeck, Jeffrey W Chambers, Emmanouil Brilakis
Interventional Cardiology Clinics
|
June 6, 2017
Atherectomy Devices for the Treatment of Calcified Coronary Lesions
Jeffrey W Chambers, Ann N Behrens, Brad J Martinsen
Cardiovascular Revascularization Medicine : Including Molecular Interventions
|
February 18, 2018
Impact of age following treatment of severely calcified coronary lesions with the orbital atherectomy system: 3-year follow-up
Michael S Lee, Richard A Shlofmitz, Brad J Martinsen, et al.
Cardiovascular Revascularization Medicine : Including Molecular Interventions
|
September 12, 2018
Outcomes after Atherectomy Treatment of Severely Calcified Coronary Bifurcation Lesions: A Single Center Experience
Jeffrey W Chambers, Charles Warner, Josh Cortez, et al.
Cardiovascular Revascularization Medicine : Including Molecular Interventions
|
November 10, 2017
Orbital atherectomy treatment of severely calcified native coronary lesions in patients with prior coronary artery bypass grafting: Acute and one-year outcomes from the ORBIT II trial
Michael S Lee, Bynthia M Anose, Brad J Martinsen, et al.
Cardiovascular Revascularization Medicine : Including Molecular Interventions
|
February 5, 2020
Orbital Atherectomy for the Treatment of Long (≥25-40 mm) Severely Calcified Coronary Lesions: ORBIT II Sub-Analysis
Gautam Kumar, Eric Youngyoon Shin, Rajesh Sachdeva, et al.
Cardiovascular Revascularization Medicine : Including Molecular Interventions
|
September 24, 2018
Procedural and Long-Term Ischemic Outcomes of Tight Subtotal Occlusions Treated with Orbital Atherectomy: An ORBIT II Subanalysis
Michael S Lee, Richard A Shlofmitz, Evan Shlofmitz, et al.
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of 3