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https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6408785/
Mar 09, 2019 · Mechanical circulatory support is an essential part of the management of cardiogenic shock and is commonly utilized as a bridge-to-decision, whether it is recovery, palliation, heart transplant or a durable mechanical circulatory support device.Cited by: 7
https://www.uabmedicine.org/patient-care/treatments/mechanical-circulatory-support-device
Mechanical Circulatory Support Device (MCSD) is a device used to treat end-stage chronic heart failure. It offers improved survival and overall quality of life for patients who have exhausted medical management or those who develop sudden, acute heart failure accompanied by cardiogenic shock.
https://www.acc.org/latest-in-cardiology/articles/2019/06/13/10/07/mechanical-circulatory-support-devices-for-acute-right-ventricular-failure
Jul 24, 2019 · Should medical and interventional treatments of RV failure fail to improve the hemodynamic profile, then mechanical circulatory support could be considered. The goal of percutaneous mechanical support is to bypass the right ventricle and improve hemodynamics, while allowing time for optimization of the patient and recovery of the RV.
https://pulmccm.org/review-articles/mechanical-circulatory-support-devices-need-know-part-1-2/
Mechanical circulatory support involves a wide range of devices that share the common function of supporting or even replacing the pump function of the failing ventricle. They decrease LV wall tension, improving coronary flow and contractility.
https://www.ahajournals.org/doi/10.1161/CIRCULATIONAHA.116.025290
In the case of RV acute mechanical circulatory support devices, H is determined by pulmonary artery (PA) pressure (Pout) and right atrial (RA) pressure (Pin). In the setting of pulmonary hypertension, H may be high, which reduces device flow. In the setting of acute severe RV failure, H may be low, which increases device flow.Cited by: 64
https://pulmccm.org/review-articles/mechanical-circulatory-support-devices-need-know-part-2-2/
Mechanical circulatory support devices represent today an available therapy for these patients at many tertiary centers. While there is limited clinical data, and several knowledge gaps exist regarding indications, patient selection and cost effectiveness, these devices represent a reasonable alternative for a group of patients refractory to first line medical therapy.
https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3082034/
Jan 01, 2011 · Mechanical circulatory support devices have been used successfully as a bridge to recovery in children, especially in the management of acute fulminant myocarditis or postcardiotomy heart failure. 57, 80, 81 The use of these devices as a bridge to transplantation has also been shown to decrease waiting list mortality and improve the efficiency of organ utilization in children. 82 However, current mechanical circulatory support …
https://www.acc.org/latest-in-cardiology/articles/2015/11/12/09/28/mechanical-circulatory-support-in-a-nutshell
Nov 13, 2015 · Usefulness of the INTERMACS scale to predict outcomes after mechanical assist device implantation. J Heart Lung Transplant 2009;28:827-33. Peura JL, Colvin-Adams M, Francis GS, et al. Recommendations for the use of mechanical circulatory support: device strategies and patient selection: a scientific statement from the American Heart Association.
https://www.medtronicacademy.com/mechanical-circulatory-support
Welcome to the Mechanical Circulatory Support Training Center on Medtronic Academy. HeartWare™ HVAD™ System educational content has a new home on Medtronic Academy. If you are a HeartWare OnDemand user, your account information and course completion history have been migrated to the Medtronic Academy learning system.
https://ccforum.biomedcentral.com/articles/10.1186/s13054-016-1235-3
Mar 15, 2016 · Long‐term mechanical circulatory support‐vads and total artificial hearts. With durable and miniaturized pumps that have proven clinical success, and the upcoming evolution to even smaller devices, future development of MCS should focus on developing the system around the pump to reduce postoperative complications.
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