AI Article Synopsis

  • A study was conducted on 15 bileaflet mechanical heart valves at the Helmholtz Institute in Germany, comparing the modified and earlier versions of Edwards-Duromedics valves with St. Jude Medical valves under two pressure curve conditions.
  • The valves were tested across nine conditions, filmed using two systems: a strobe light system and a high-speed video recording system for detailed analysis.
  • Data from both recording systems were independently analyzed to verify consistency and assess the reliability of methods for detecting cavitation thresholds.

Article Abstract

A total of 15 bileaflet mechanical heart valves were studied in a pulse duplicator at the Helmholtz Institute (Aachen, Germany) under conditions approximating first, a physiological pressure curve and subsequently, a sinusoidal pressure curve. In this study Edwards-Duromedics valves of the modified specification were compared with the earlier version of the Edwards-Duromedics valve as well as with St. Jude Medical valves. Each valve was tested at a series of nine (9) conditions. At each condition, without altering the valve installation or the systemic conditions, each valve was filmed by two separate video systems: the Helmholtz Institute strobe light system and a high speed video recording system. All data, as recorded by each system, was then independently analyzed by both of the two contributing groups and subsequently compared. In this manner, it was possible to objectively verify not only the consistency of the data obtained, but to also determine the relative reliability of the methods for cavitation threshold detection.

Download full-text PDF

Source

Publication Analysis

Top Keywords

cavitation threshold
8
heart valves
8
helmholtz institute
8
pressure curve
8
threshold respect
4
respect dp/dt
4
dp/dt evaluation
4
evaluation bileaflet
4
bileaflet pyrolitic
4
pyrolitic carbon
4

Similar Publications

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!