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Ultrasound Echoes as Biometric Navigators

机译:超声回声作为生物识别导航器

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摘要

We demonstrate a new method of using ultrasound data to achieve prospective motion compensation in MRI, especially for respiratory motion during interventional MRI procedures in moving organs such as the liver. The method relies on fingerprint-like biometrically distinct ultra-sound echo patterns produced by different locations in tissue, which are collated with geometrical information from MRI during a training stage to form a mapping table that relates ultrasound measurements to positions. During prospective correction, the system makes frequent ultrasound measurements and uses the map to determine the corresponding position.Results in motorized linear motion phantoms and freely breathing animals indicate that the system performs well. Apparent motion is reduced by up to 97.8%, and motion artifacts are reduced or eliminated in 2D Spoiled Gradient-Echo images. The motion compensation is sufficient to permit MRI thermometry of focused ultrasound heating during respiratory-like motion, with results similar to those obtained in the absence of motion.This new technique may have applications for MRI thermometry and other dynamic imaging in the abdomen during free breathing.
机译:我们展示了使用超声数据实现MRI前瞻性运动补偿的新方法,特别是在介入的MRI程序中呼吸动器如肝脏的过程中的呼吸运动。该方法依赖于由组织中的不同位置产生的指纹样生物识别的超声回声图案,其在训练阶段与MRI的几何信息进行整理,以形成将超声测量与位置相关的映射表。在预期校正期间,系统经常进行超声测量并使用地图确定相应的位置。电动线性运动幻像中的结果和自由呼吸动物表明系统表现良好。表观运动减少了高达97.8%,并且在2D损坏的梯度回波图像中减少或消除运动伪影。运动补偿足以允许聚焦超声加热在呼吸样运动期间的MRI温度,结果类似于在没有运动的情况下获得的结果。这种新技术可能具有用于在自由呼吸期间腹部MRI温度和其他动态成像的应用。

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