Factors Associated with Energy Efficiency of Focused Ultrasound Through the Skull: A Study of 3D-Printed Skull Phantoms and Its Comparison with Clinical Experiences.
Authors: Kong C, Park SH, Shin J, Baek HG, Park J, Na YC, Chang WS, Chang JW
While focused ultrasound (FUS) is non-invasive, the ultrasound energy is attenuated by the skull which results in differences in energy efficiency among patients. In this study, we investigated the effect of skull variables on the energy efficiency of FUS. The thickness and density of the skull and proportion of the trabecular bone were selected as factors that could affect ultrasound energy transmittance. Sixteen 3D-printed skull models were designed and fabricated to reflect the three factors. The energy of each phantom was measured using an ultrasonic sound field energy measurement system. The thickness and proportion of trabecular bone affected the attenuation of transmitted energy. There was no difference in the density of the trabecular bone. In clinical data, the trabecular bone ratio showed a significantly greater correlation with dose/delivered energy than that of thickness and the skull density ratio. Currently, for clinical non-thermal FUS, the data are not sufficient, but we believe that the results of this study will be helpful in selecting patients and appropriate parameters for FUS treatment.
Introduction
Purpose
Drug delivery with BBB opening
Study Objective
To determine how skull variables—thickness, trabecular bone proportion, and density—affect the energy transmittance/efficiency of focused ultrasound.
Outcomes and Safety
Summary of Outcomes
For low‑intensity transcranial FUS (BBB opening) ultrasound transmission was increasingly attenuated with greater skull thickness and was better with a higher trabecular bone ratio (TBr), whereas skull density ratio (SDR) and trabecular bone density/porosity showed little or inconsistent effect (significant factors: thickness and TBr).
Safety-related matter
The authors note that FUS has been applied to CNS diseases with low complication rates and high success rates. They also mention instances where temperature failed to rise sufficiently to create a lesion, but report no specific adverse events related to low-intensity BBB-opening FUS in this study.
Brain Region
Ultrasound Parameters
FUS Mode
pulsed
Focal Characteristics
Focal depth: None, Focal length: None, Aperture size: None
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