Evaluation of three-dimensional temperature distributions produced by a low-frequency transcranial focused ultrasound system within ex vivo human skulls.
Authors: McDannold N, Park EJ, Mei CS, Zadicario E, Jolesz F
Transcranial MR-guided focused ultrasound (TcMRgFUS) provides a potential noninvasive alternative to surgical resection and for other treatments for brain disorders. Use of low-frequency ultrasound provides several advantages for TcMRgFUS, but is potentially limited by reflection and standing wave effects that may cause secondary hotspots within the skull cavity. The purpose of this work was to use volumetric magnetic resonance temperature imaging (MRTI) and ex vivo human skulls filled with tissue-mimicking phantom material to search for heating distant from the focal point that may occur during sonication with a TcMRgFUS system as a result of reflections or standing wave effects. Heating during 120-s sonications was monitored within the entire skull volume for 12 different locations in two different skulls. The setup used a hemispheric array operating at 220 kHz. Multiple sonications were delivered at each location while varying the MRTI slice positions to provide full coverage of the skull cavity. An automated routine was used evaluate the MRTI to detect voxel regions that appeared to be heated by ultrasound. No secondary hotspots with a temperature rise of 15% or more of the focal heating were found. The MRTI noise level prevented the identification of possible hotspots with a lower temperature rise. These results suggest that significant secondary heating by this TcMRgFUS system at points distant from the focal point are not common.
Introduction
Purpose
Thermal ablation
Study Objective
To determine whether low-frequency transcranial MR-guided focused ultrasound produces significant secondary heating distant from the focal point in ex vivo human skulls using volumetric MR temperature imaging.
Animal model / Human subject
Human (ex vivo skulls); strain: N/A; age: not reported; sex: not reported
MRI or image guidance method
MR-guided (volumetric MR temperature imaging, MRTI)
Outcomes and Safety
Summary of Outcomes
In ex vivo human skull phantoms, TcMRgFUS using a 220 kHz hemispheric array with 120 s sonications produced focal heating but no secondary hotspots with temperature rise ≥15% of the focal heating across 12 locations in two skulls; MRTI noise prevented detection of smaller rises. The successful tested parameters were 220 kHz frequency, hemispheric array, and 120 s sonication durations.
Duration of biological effect
120 s
Safety-related matter
No secondary hotspots with a temperature rise ≥15% of the focal heating were detected during 120 s sonications in ex vivo skulls. MRTI noise prevented detection of smaller temperature rises, but the results suggest significant secondary heating distant from the focal point is not common.
Brain Region
Ultrasound Parameters
Ultrasound instrument
Hemispheric array (TcMRgFUS system) operating at 220 kHz; manufacturer: None; transducer aperture/diameter: None
FUS Frequency
220 kHz
Pulse duration
120 s
Duration of a single FUS session
120 s
Focal Characteristics
focal depth: None, focal length: None, aperture size: None
Treatment frequency
Multiple sessions
We are open to feedback. If you see a mistake or have a suggestion, please contact us.
← Back to Search