Unknown

Dataset Information

0

Vertical open-bore MRI scanners generate significantly less radiofrequency heating around implanted leads: A study of deep brain stimulation implants in 1.2T OASIS scanners versus 1.5T horizontal systems.


ABSTRACT:

Purpose

Patients with active implants such as deep brain stimulation (DBS) devices are often denied access to MRI due to safety concerns associated with the radiofrequency (RF) heating of their electrodes. The majority of studies on RF heating of conductive implants have been performed in horizontal close-bore MRI scanners. Vertical MRI scanners which have a 90° rotated transmit coil generate fundamentally different electric and magnetic field distributions, yet very little is known about RF heating of implants in this class of scanners. We performed numerical simulations as well as phantom experiments to compare RF heating of DBS implants in a 1.2T vertical scanner (OASIS, Hitachi) compared to a 1.5T horizontal scanner (Aera, Siemens).

Methods

Simulations were performed on 90 lead models created from post-operative CT images of patients with DBS implants. Experiments were performed with wires and commercial DBS devices implanted in an anthropomorphic phantom.

Results

We found significant reduction of 0.1 g-averaged specific absorption rate (30-fold, P < 1 × 10-5 ) and RF heating (9-fold, P < .026) in the 1.2T vertical scanner compared to the 1.5T conventional scanner.

Conclusion

Vertical MRI scanners appear to generate lower RF heating around DBS leads, providing potentially heightened safety or the flexibility to use sequences with higher power levels than on conventional systems.

SUBMITTER: Kazemivalipour E 

PROVIDER: S-EPMC8713475 | biostudies-literature | 2021 Sep

REPOSITORIES: biostudies-literature

altmetric image

Publications

Vertical open-bore MRI scanners generate significantly less radiofrequency heating around implanted leads: A study of deep brain stimulation implants in 1.2T OASIS scanners versus 1.5T horizontal systems.

Kazemivalipour Ehsan E   Bhusal Bhumi B   Vu Jasmine J   Lin Stella S   Nguyen Bach Thanh BT   Kirsch John J   Nowac Elizabeth E   Pilitsis Julie J   Rosenow Joshua J   Atalar Ergin E   Golestanirad Laleh L  

Magnetic resonance in medicine 20210507 3


<h4>Purpose</h4>Patients with active implants such as deep brain stimulation (DBS) devices are often denied access to MRI due to safety concerns associated with the radiofrequency (RF) heating of their electrodes. The majority of studies on RF heating of conductive implants have been performed in horizontal close-bore MRI scanners. Vertical MRI scanners which have a 90° rotated transmit coil generate fundamentally different electric and magnetic field distributions, yet very little is known abou  ...[more]

Similar Datasets

| S-EPMC12658110 | biostudies-literature
| S-EPMC12681316 | biostudies-literature
| S-EPMC10947979 | biostudies-literature
| S-EPMC9324485 | biostudies-literature
| S-EPMC5886805 | biostudies-literature
| S-EPMC8586574 | biostudies-literature
| S-EPMC12680154 | biostudies-literature
| S-EPMC10847440 | biostudies-literature