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Phase Aberration Correction in Transcranial Ultrasound Imaging using Averaged Sound Velocity Map in Delay-and-Sum Beamformer

机译:在延迟和和延迟波束形成器中平均声速图的经颅超声成像中的相位像差校正

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Deep brain stimulation (DBS) is used to modify the brain function. Localization of the electrode(s) used in DBS is an important mater since the success of the treatment highly depends on it. Transcranial ultrasound imaging (TUI) can be a proper candidate to monitor the electrode(s), but it is affected by the phase aberration caused by the skull bone. To address this issue, in this paper, we propose a novel beamforming method based on the sound velocity map of the imaging medium. For each combination of the imaging grid and element of the array, an averaged sound speed (ASD) is calculated. Then, the ASD is used inside a delay-and-sum beamforming method. The numerical results show that the proposed method compensates the phase aberration caused by the skull having a thickness of 5 mm with a sound speed twice of the imaging medium (i.e., water). The proposed method can be implemented in a real-time manner, which makes it a great candidate to be used in operation rooms for surgeries.
机译:深脑刺激(DBS)用于改变大脑功能。在DBS中使用的电极的定位是重要的母体,因为治疗的成功高度取决于它。经颅超声成像(TUI)可以是监测电极的适当候选物,但它受到颅骨引起的相位像差的影响。为了解决这个问题,在本文中,我们提出了一种基于成像介质的声速图的新型波束形成方法。对于阵列的成像网格和元件的每个组合,计算平均声速(ASD)。然后,在延迟和和波束成形方法内使用ASD。数值结果表明,该方法补偿了由厚度为5mm的颅骨引起的相像差,其发声速度是成像介质的两次(即水)。所提出的方法可以以实时方式实现,这使其成为用于手术的操作室的伟大候选者。

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