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Transcranial focused ultrasound generates skull-conducted shear waves: Computational model and implications for neuromodulation.

Publication ,  Journal Article
Salahshoor, H; Shapiro, MG; Ortiz, M
Published in: Applied physics letters
July 2020

Focused ultrasound (FUS) is an established technique for non-invasive surgery and has recently attracted considerable attention as a potential method for non-invasive neuromodulation. While the pressure waves in FUS procedures have been extensively studied in this context, the accompanying shear waves are often neglected due to the relatively high shear compliance of soft tissues. However, in bony structures such as the skull, acoustic pressure can also induce significant shear waves that could propagate outside the ultrasound focus. Here, we investigate wave propagation in the human cranium by means of a finite-element model that accounts for the anatomy, elasticity, and viscoelasticity of the skull and brain. We show that, when a region on the scalp is subjected to FUS, the skull acts as a waveguide for shear waves that propagate with a speed close to 1500 m/s, reaching off-target structures such as the cochlea. In particular, when a sharp onset of FUS is introduced in a zone proximal to the intersection of the parietal and temporal cranium, the bone-propagated shear waves reach the inner ear in about 40  μs , leading to cumulative displacements of about 1  μm . We further quantify the effect of ramped and sharp application of FUS on the cumulative displacements in the inner ear. Our results help explain the off-target auditory responses observed during neuromodulation experiments and inform the development of mitigation and sham control strategies.

Duke Scholars

Published In

Applied physics letters

DOI

EISSN

1077-3118

ISSN

0003-6951

Publication Date

July 2020

Volume

117

Issue

3

Start / End Page

033702

Related Subject Headings

  • Applied Physics
  • 51 Physical sciences
  • 40 Engineering
  • 10 Technology
  • 09 Engineering
  • 02 Physical Sciences
 

Citation

APA
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ICMJE
MLA
NLM
Salahshoor, H., Shapiro, M. G., & Ortiz, M. (2020). Transcranial focused ultrasound generates skull-conducted shear waves: Computational model and implications for neuromodulation. Applied Physics Letters, 117(3), 033702. https://doi.org/10.1063/5.0011837
Salahshoor, Hossein, Mikhail G. Shapiro, and Michael Ortiz. “Transcranial focused ultrasound generates skull-conducted shear waves: Computational model and implications for neuromodulation.Applied Physics Letters 117, no. 3 (July 2020): 033702. https://doi.org/10.1063/5.0011837.
Salahshoor, Hossein, et al. “Transcranial focused ultrasound generates skull-conducted shear waves: Computational model and implications for neuromodulation.Applied Physics Letters, vol. 117, no. 3, July 2020, p. 033702. Epmc, doi:10.1063/5.0011837.

Published In

Applied physics letters

DOI

EISSN

1077-3118

ISSN

0003-6951

Publication Date

July 2020

Volume

117

Issue

3

Start / End Page

033702

Related Subject Headings

  • Applied Physics
  • 51 Physical sciences
  • 40 Engineering
  • 10 Technology
  • 09 Engineering
  • 02 Physical Sciences