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Performance of a transcranial ultrasound array designed for 4D acoustoelectric brain imaging in humans

机译:用于4D声电脑成像的经颅超声阵列在人体中的性能

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Noninvasive electrical brain imaging in humans often suffers from poor spatial resolution due to the uncertain spread of electric fields through the head. To overcome this limitation, we propose 4D transcranial acoustoelectric brain imaging (tABI) for mapping current densities at a spatial resolution confined to the ultrasound (US) focus. Acoustoelectric (AE) imaging exploits an interaction between a pressure wave and tissue resistivity, which was demonstrated for mapping the cardiac activation wave in the rabbit heart. Our goal is to extend this modality for mapping the human brain noninvasively. This study describes the performance of a 2D US array designed for tABI in humans.
机译:由于电场在头部中的传播不确定,因此人类的非侵入性脑成像通常会遭受较差的空间分辨率。为了克服此限制,我们提出了4D经颅声电脑成像(tABI),用于在局限于超声(US)焦点的空间分辨率下绘制电流密度。声电(AE)成像利用了压力波与组织电阻率之间的相互作用,这种相互作用已被证明可绘制兔子心脏中的心脏激活波。我们的目标是扩展这种方式,以非侵入方式绘制人脑。这项研究描述了为人类tABI设计的2D US阵列的性能。

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