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Compensation of fat layer effects in ultrasound imaging using an inclined-fat-layer model derived from magnetic resonance images

机译:使用从磁共振图像得出的倾斜脂肪层模型对超声成像中的脂肪层效应进行补偿

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摘要

When cutaneous fat layers are in the ultrasound imaging region, the phase aberration caused by the fat layers induce image distortion as well as spatial resolution degradation. The phase aberration may complicate clinical procedures particularly when ultrasound imaging is employed for spatial positioning of medical devices like a biopsy needle or HIFU. To compensate the fat layer effects more precisely in beamforming, an inclined-fat-layer model has been established from the magnetic resonance images of the same imaging region as in the ultrasound scanning. We have verified utility of the fat layer model by taking images of a metal needle put into an inclined-fat-layer mimicking phantom. The ultrasound images taken with a 128-element linear phase array operating at 6 MHz have shown better resolution and less distortion when receive beamforming was performed with the phase delay data derived from the inclined-fat-layer model.
机译:当皮肤脂肪层在超声成像区域中时,由脂肪层引起的相差会引起图像失真以及空间分辨率下降。相位像差可能会使临床程序复杂化,尤其是在将超声成像用于活检针或HIFU等医疗设备的空间定位时。为了更精确地补偿波束成形中的脂肪层效应,已经从与超声扫描相同的成像区域的磁共振图像建立了倾斜脂肪层模型。我们已经通过将金属针插入模仿模仿模型的倾斜脂肪层中来拍摄图像,从而验证了脂肪层模型的实用性。当使用从倾斜脂肪层模型导出的相位延迟数据执行接收波束成形时,使用以6 MHz运行的128个元素的线性相位阵列拍摄的超声图像显示出更好的分辨率和更少的失真。

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