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Computational exploration of wave propagation and heating from transcranial focused ultrasound for neuromodulation

74

Citations

40

References

2016

Year

Abstract

Ultrasound for noninvasive neuromodulation holds great promise and appeal for its non-invasiveness, high spatial resolution and deep focal lengths. Here we show gross brain anatomy and biological material properties to have limited effect on ultrasound wave propagation and to result in safe heating levels in the skull and brain.

References

YearCitations

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