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A non-invasive method for focusing ultrasound through the human skull

Physics in Medicine and Biology · 2002 · Vol. 47(8) · pp. 1219–1236
Gregory T. ClementKullervo Hynynen

Abstract

A technique for focusing ultrasound through the human skull is described and verified. The approach is based on a layered wavevector-frequency domain model, which propagates ultrasound from a hemisphere-shaped transducer through the skull using input from CT scans of the head. The algorithm calculates the driving phase of each transducer element in order to maximize the signal at the intended focus. This approach is tested on ten ex vivo human skulls using a 0.74 MHz, 320-element array. A stereotaxic reference frame is affixed to the skulls in order to provide accurate registration between the CT images and the transducer. The focal quality is assessed with a hydrophone placed inside the skull. In each trial the phase correction algorithm successfully restored the focus inside the skull at a location within 1 mm from the intended focal point. The results demonstrate the feasibility of using the method for completely non-invasive ultrasound brain surgery and therapy.

Ultrasound and Hyperthermia ApplicationsUltrasound Imaging and ElastographyPhotoacoustic and Ultrasonic ImagingTransducerHydrophoneSkullUltrasoundFocus (optics)Focal pointComputer scienceSIGNAL (programming language)Human headAcoustics

MeSH terms

HumansSkullTomography, X-Ray ComputedUltrasonographyModels, Statistical

Funding

  • National Institutes of Health
Citations
502
FWCI
10.52
field-weighted impact
References
31
Percentile
99%
vs. same field & year
Citations per year
References
Fundamentals of Acoustics
American Journal of Physics · 1951 · 3,384 citations
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