Gyro pump wear and deformation analysis in vivo study: Creep deformation

Citation
K. Nakata et al., Gyro pump wear and deformation analysis in vivo study: Creep deformation, ARTIF ORGAN, 24(8), 2000, pp. 653-655
Citations number
6
Categorie Soggetti
Research/Laboratory Medicine & Medical Tecnology
Journal title
ARTIFICIAL ORGANS
ISSN journal
0160564X → ACNP
Volume
24
Issue
8
Year of publication
2000
Pages
653 - 655
Database
ISI
SICI code
0160-564X(200008)24:8<653:GPWADA>2.0.ZU;2-M
Abstract
The Gyro pump has a double pivot bearing system to support its impeller. In this study, the integrity of the bearing system was examined after ex vivo studies. The pumps were implanted into calves and evaluated for different periods as a paracorporeal left ventricular assist device (LVAD). One pump was subjected to a test of 30 days, 1 for 15 days, 4 for 14 days, 1 for 10 days, 1 for 7 days, 2 for 4 days, and 4 for 2 days. One additional pump was subjected to percutaneous cardiopulmonary support (PCPS) condition for 6 d ays (total pressure head 500 mm Hg with a pump flow rate of 3 L/min). The a nticoagulation treatment consisted of a continuous administration of hepari n to maintain an achieved clotting time (ACT) of 200-250 s during the LVAD study and 250-300 a during the PCPS study. After the experiment, the pumps were disassembled, and the wear and deformation of male and female bearings were analyzed. There were no dimensional changes on male bearings but ther e were on female bearings. Wear and deformation of the female bearings were calculated as follows: wear and deformation = (depth of female before pump ing) - (depth after pumping). Thirteen assembled Gyro pumps were disassembl ed to measure the depth of the female bearings before pumping. There was no statistical relationship between the wear and deformation and the motor sp eed x driving period. From these results, the deformation was not due to we ar but to the creep or elastic deformation. This study suggested that the d ouble pivot bearing system of the Gyro pump is highly durable.