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MRI and Implanted Medical Devices: Basic Interactions with an Emphasis on Heating SCIE SCOPUS

Title
MRI and Implanted Medical Devices: Basic Interactions with an Emphasis on Heating
Authors
Nyenhuis, JAPark, SMKamondetdacha, RAmjad, AShellock, FGRezai, AR
Date Issued
2005-09
Publisher
IEEE
Abstract
There are three principal magnetic fields in magnetic resonance imaging (MRI) that may interact with medical implants. The static field will induce force and torque on ferromagnetic objects. The pulsed gradients are of audio frequency and the implant may concentrate the induced currents, with a potential for nerve stimulation or electrical inference. The currents induced in the body by the radio frequency (RF) field may also be concentrated by an implant, resulting in potentially dangerous heating of surrounding tissues. This paper presents basic information about MRI interactions with implants with an emphasis on RF-induced heating of leads used for deep brain stimulation (DBS). The temperature rise at the electrodes was measured in vitro as a function of the overall length of a DBS lead at an RF frequency of 64 MHz. The maximal temperature rise occurred for an overall length of 41 cm. The method of moments was used to calculate the current induced in the lead. From the induced currents, the RF power deposition near the electrodes was calculated and the heat equation was used to model the temperature rise. The calculated temperature rises as a function of lead length were in good agreement with the measured values.
URI
https://oasis.postech.ac.kr/handle/2014.oak/36024
DOI
10.1109/FDMR.2005.859033
ISSN
1530-4388
Article Type
Article
Citation
IEEE Transactions on Device and Materials Reliability, vol. 5, no. 3, page. 467 - 480, 2005-09
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박성민PARK, SUNG MIN
Dept. Convergence IT Engineering
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