Drexel University - Comprehensive, integrated academics enhanced by co-operative education, technology, and research opportunities. | Drexel University
Drexel University
Search events. View events.

All Categories

Click for help in using calendar displays. Print the contents of the current screen.
Display Format: 
Event Details
Notify me if this event changes.Add this event to my personal calendar.
Go Back
Predicting Angular Displacement of Medical Devices in an MRI Scanner Bore Using COMSOL Multiphysics
Start Date: 4/24/2017Start Time: 3:00 PM
End Date: 4/24/2017End Time: 5:00 PM

Event Description
BIOMED Master's Thesis Defense

Title:
Predicting Angular Displacement of Medical Devices in an MRI Scanner Bore Using COMSOL Multiphysics

Speaker:
Adam Ferreira, MS Candidate, School of Biomedical Engineering, Science and Health Systems

Advisors:
Steven Kurtz, PhD, Associate Research Professor, School of Biomedical Engineering, Science and Health Systems

Fred Allen, PhD, Associate Teaching Professor, School of Biomedical Engineering, Science and Health Systems

Abstract:
Medical devices undergo a series of evaluations to determine their performance and level of safety in a magnetic resonance (MR) environment. The standard of focus for this work is ASTM F2052-15, which measures the induced displacement of a device due to the spatial gradient fields present in the MRI scanner bore. This test entails suspending the device from a string near the entrance of the MRI bore and measuring the angle of deflection.

Evaluation of the performance of medical devices in the MR environment is a costly endeavor, both in time and resources. This work aims to develop a predictive model to help eliminate some of the burden associated with this testing. The current method of testing magnetically induced displacement force is by measuring the deflection angle between the device and the test fixture. The displacement force is then computed using this deflection angle. It is expected that this deflection angle can be recreated within the simulation and the forces acting on the device be accurately displayed, and the associated displacement force estimated numerically.

This model provides the freedom of manipulating a device and evaluating its performance almost instantaneously. Extensions of this model have the potential to further the detailed numerical evaluation of medical devices in the MR environment. This information could lead to re-evaluation of the current ASTM standards surrounding medical devices in the MR environment.
Contact Information:
Name: Ken Barbee
Phone: 215-895-1335
Email: barbee@drexel.edu
Adam Ferreira
Location:
Bossone Research Center, Room 709, located at 32nd and Market Streets.
Audience:
  • Undergraduate Students
  • Graduate Students
  • Faculty
  • Staff

  • Display Month:

    Advanced Search (New Search)
    Date Range:
    Time Range:
    Category(s):
    Audience: 

    Special Features: 

    Keyword(s):
    Submit
    Select item(s) to Search
    Select item(s) to Search
    Select item(s) to Search
    Select item(s) to Search