Publication | Open Access
Human Fitting Studies of Cleveland Clinic Continuous-Flow Total Artificial Heart
18
Citations
5
References
2015
Year
Device TherapyCardiac AnatomySurgeryBiomedical EngineeringHuman Fitting StudiesArtificial OrganPublic HealthCardiologyBlood Flow MeasurementCardiac MechanicCardiothoracic SurgeryCardiovascular ImagingAssisted CirculationOutflow Port OrientationRight Outflow DirectionOutflow ConduitsCardiovascular DiseaseMechanical Circulatory SupportThoracic SurgeryMedicineHeart TransplantationAnesthesiology
Implantation of mechanical circulatory support devices is challenging, especially in patients with a small chest cavity. We evaluated how well the Cleveland Clinic continuous-flow total artificial heart (CFTAH) fit the anatomy of patients about to receive a heart transplant. A mock pump model of the CFTAH was rapid-prototyped using biocompatible materials. The model was brought to the operative table, and the direction, length, and angulation of the inflow/outflow ports and outflow conduits were evaluated after the recipient's ventricles had been resected. Thoracic cavity measurements were based on preoperative computed tomographic data. The CFTAH fit well in all five patients (height, 170 ± 9 cm; weight, 75 ± 24 kg). Body surface area was 1.9 ± 0.3 m (range, 1.6-2.1 m). The required inflow and outflow port orientation of both the left and right housings appeared consistent with the current version of the CFTAH implanted in calves. The left outflow conduit remained straight, but the right outflow direction necessitated a 73 ± 22 degree angulation to prevent potential kinking when crossing over the connected left outflow. These data support the fact that our design achieves the proper anatomical relationship of the CFTAH to a patient's native vessels.
| Year | Citations | |
|---|---|---|
Page 1
Page 1