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Towards Aberration Correction of Transcranial Ultrasound Using Acoustic Droplet Vaporization

机译:利用声滴汽化法进行经颅超声像差校正

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摘要

We report on the first experiments demonstrating the transcranial acoustic formation of stable gas bubbles that can be used for transcranial ultrasound aberration correction. It is demonstrated that the gas bubbles can be formed transcranially by phase-transitioning single, superheated, micron-size, liquid dodecafluoropentane droplets with ultrasound, a process known as acoustic droplet vaporization (ADV). ADV was performed at 550 kHz, where the skull is less attenuating and aberrating, allowing for higher-amplitudes to be reached at the focus. Additionally, it is demonstrated that time-reversal focusing at 1 MHz can be used to correct for transcranial aberrations with a single gas bubble acting as a point beacon. Aberration correction was performed using a synthetic aperture approach and verified by the realignment of the scattered waveforms. Under the conditions described below, time-reversal aberration correction using gas bubbles resulted in a gain of 1.9 ± 0.3 in an introduced focusing factor. This is a small fraction of the gain anticipated from complete transmit-receive of a fully-populated two-dimensional array with sub-wavelength elements.
机译:我们报告的第一个实验证明了可用于经颅超声像差校正的稳定气泡的经颅声学形成。结果表明,可以通过超声使单个,过热,微米大小的液态十二氟戊烷液滴相转变来跨颅形成气泡,该过程称为声滴汽化(ADV)。 ADV是在550 kHz频率下执行的,头骨的衰减和像差较小,从而可以在焦点处达到更高的振幅。此外,还证明了以1 MHz的时间反转聚焦可用于校正以单个气泡作为点信标的经颅像差。使用合成孔径方法执行像差校正,并通过重新排列散射波形进行验证。在下述条件下,使用气泡的时间反转像差校正可在引入的聚焦因子上获得1.9±0.3的增益。这是具有子波长元素的,完全填充的二维阵列的完全发射-接收所预期的增益的一小部分。

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