58 research outputs found
Current Status of the MicroMed DeBakey Noon Ventricular Assist Device
The HeartAttendant programs the controller and sets pump rpm and alarm thresholds. It collects and stores pump parameters when connected to the controller and enables remote monitoring via the Internet. It charges and reconditions the batteries and can provide electrical power from the wall. It eliminates the need for the Clinical Data Acquisition System and the Patient Home Support System. The new controller, in all modes, displays pump flow (L/min), current/amps, power/watts, rpm, and diagnostic and emergency alarms. The HeartAssist 5 is CE-approved in Europe. A new U.S. Food and Drug Administration study of the HeartAssist 5 as a bridge to transplant is being finalized
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Quantitative changes in mast cell populations after left ventricular assist device implantation
Mast cells have been implicated as important in tissue remodeling and fibrosis. We investigated the effect of mechanical ventricular unloading upon myocardial fibrosis and cardiac mast cell density in patients undergoing left ventricular assist device (LVAD) implantation. Paired myocardial tissue samples were obtained from 30 patients with end-stage cardiomyopathy at the time of LVAD implantation and at the time of removal and were compared with samples taken from donor hearts. Tissue sections were stained and quantitated for mast cells and myocardial fibrosis. Mast cell density (tryptase positive cells) in cardiomyopathy was higher than that in donor hearts (33.5 +/- 3.6 SEM cells/10 fields vs.15.2 +/- 2.0 SEM cells/10 fields respectively, p = 0.04) and was lower than LVAD supported hearts (33.5 +/- 3.6 SEM cells/10 fields vs. 49.8 +/- 5.7 SEM cells/10 fields respectively, p = 0.01). Mast cells are primarily localized in areas of increased interstitial fibrosis adjacent to myocardial cells and not vessels. There was statistically significant correlation between mast cells and interstitial collagen (p = 0.03) in patients before LVAD implantation that did not persist after mechanical support (p = 0.18). These results suggest that mechanical support with left ventricular assist devices induces an increase in mast cell number in the myocardium and an associated decrease in myocardial fibrosis. We believe these data demonstrate a dual role for cardiac mast cells in the increase in fibrosis in heart failure and the decrease after LVAD and its associated cardiac improvement
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