Long-term follow-up of Thoratec ventricular assist device bridge-to-recovery patients successfully removed from support after recovery of ventricular function.
about
Minimally invasive is the future of left ventricular assist device implantationVentricular assist devices: pharmacological aspects of a mechanical therapyBridge to removal: a paradigm shift for left ventricular assist device therapy.Left ventricular assist devices: current controversies and future directions.The Cohn felt plug: an effective HeartMate II® reimplantation technique.Mechanical circulatory support: a clinical reality.Left Ventricular Assist Device as a Bridge to Recovery for Patients With Advanced Heart FailureLeft ventricular remodeling and myocardial recovery on mechanical circulatory support.Predictors of Extracorporeal Membrane Oxygenation Support for Children with Acute MyocarditisMechanical circulatory support of the critically ill child awaiting heart transplantation.Heart failure reversal by ventricular unloading in patients with chronic cardiomyopathy: criteria for weaning from ventricular assist devices.Ventricular reconditioning and pump explantation in patients supported by continuous-flow left ventricular assist devicesThoratec paracorporeal biventricular assist device therapy: the Freiburg experience.Left ventricular assist devices: an evidence-based analysisVentricular-assist devices for the treatment of chronic heart failure.Adequate systemic perfusion maintained by a CentriMag during acute heart failureBridge to recovery: understanding the disconnect between clinical and biological outcomes.Left ventricular assist device unloading effects on myocardial structure and function: current status of the field and call for action.Left ventricular assist device as a bridge to recovery in a young woman admitted with peripartum cardiomyopathy.Magnitude and time course of changes induced by continuous-flow left ventricular assist device unloading in chronic heart failure: insights into cardiac recovery.Acute myocardial infarction complicated by cardiogenic shock: role of mechanical circulatory support.The paradox of left ventricular assist device unloading and myocardial recovery in end-stage dilated cardiomyopathy: implications for heart failure in the elderly.The pharmacotherapy implications of ventricular assist device in the patient with end-stage heart failure.Is myocardial recovery possible and how do you measure it?Contribution of ventricular assist devices to the recovery of failing hearts: a review and the Berlin Heart Center Experience.Treatment strategies for myocardial recovery in heart failure.Myocardial recovery: a focus on the impact of left ventricular assist devices.State of the art of mechanical circulatory support.Comparison of continuous-flow and pulsatile-flow left ventricular assist devices: is there an advantage to pulsatility?Building a bridge to recovery: the pathophysiology of LVAD-induced reverse modeling in heart failure.Myocardial recovery with mechanical circulatory support.Minimally Invasive LVAD Deactivation in a 65-Year-Old Man with Recurrent Pump Thrombosis and Left Ventricular Recovery.Inhibition of CaMKII Attenuates Progressing Disruption of Ca(2+) Homeostasis Upon Left Ventricular Assist Device Implantation in Human Heart Failure.Heartmate II outflow graft ligation and driveline excision without pump removal for left ventricular recovery.Myocardial recovery during mechanical circulatory support: cellular, molecular, genomic and organ levels.One defining moment in an altered future.Effects of chronic administration of clenbuterol on function and metabolism of adult rat cardiac muscle.Existing issues and valid concerns in continuous-flow ventricular assist devices.Intramyocardial delivery of bone marrow mononuclear cells and mechanical assist device implantation in patients with end-stage cardiomyopathy.Bridge-to-recovery from acute myocarditis in a 12-year-old child.
P2860
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P2860
Long-term follow-up of Thoratec ventricular assist device bridge-to-recovery patients successfully removed from support after recovery of ventricular function.
description
2002 nî lūn-bûn
@nan
2002年の論文
@ja
2002年学术文章
@wuu
2002年学术文章
@zh-cn
2002年学术文章
@zh-hans
2002年学术文章
@zh-my
2002年学术文章
@zh-sg
2002年學術文章
@yue
2002年學術文章
@zh
2002年學術文章
@zh-hant
name
Long-term follow-up of Thorate ...... overy of ventricular function.
@en
Long-term follow-up of Thorate ...... overy of ventricular function.
@nl
type
label
Long-term follow-up of Thorate ...... overy of ventricular function.
@en
Long-term follow-up of Thorate ...... overy of ventricular function.
@nl
prefLabel
Long-term follow-up of Thorate ...... overy of ventricular function.
@en
Long-term follow-up of Thorate ...... overy of ventricular function.
@nl
P2093
P1476
Long-term follow-up of Thorate ...... overy of ventricular function.
@en
P2093
Aly El-Banayosy
Charles H Moore
Daniel Y Loisance
David J Farrar
Howard Frazier
Lawrence R McBride
Paul J Hendry
Robert L Kormos
Timothy B Icenogle
William R Holman
P304
P356
10.1016/S1053-2498(01)00408-9
P577
2002-05-01T00:00:00Z