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The calibration of targeting errors for an ultrasound-guided high-intensity focused ultrasound system

机译:超声引导的高强度聚焦超声系统的瞄准误差校准

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Accurate targeting is one indispensable feature of image-guided high-intensity focused ultrasound (HIFU) systems for treatment safety and efficacy. In our previously developed ultrasound-guided phased-array HIFU system, a rotatable imaging probe was mounted into the central hole of applicator for targeting and monitoring. Two-dimensional image sequence of different imaging planes can be obtained by rotation of the probe. The misalignment between the spots predetermined in the image and the spots sonicated in the tissue can result in the ablation of normal tissue outside the targeting volume, and thus targeting error is unavoidable. An acrylic plate internally placing two flat-head bolts was constructed to measure and calibrate the targeting error. The imaging planes were switched from -90° to 90° with a 30° step, and the targeting errors were measured 12 times for each of these planes before and after calibration. The targeting errors in other imaging planes could be estimated by linear interpolation using the measured errors in the nearest two imaging planes. The coordinates of the spots to be sonicated were corrected in consideration of the targeting errors in the selected imaging plane. After calibration, the mean targeting errors were reduced to 0.30~0.68 mm from 0.86~1.74 mm. Besides, in the ex vivo experiment the needle-thermocouple tip was used as the target which could be identified in the image. The temperature rise measured by the thermocouple during sonication was in accordance with the theoretical result. In conclusion, the calibration of targeting errors is effective for our system, and the targeting accuracy is also capable to ensure safe sonication.
机译:精确靶向是图像引导高强度聚焦超声(HIFU)系统必不可少的功能,以提高治疗的安全性和有效性。在我们先前开发的超声引导相控阵HIFU系统中,可旋转的成像探针安装在施药器的中心孔中,用于靶向和监测。通过探头的旋转可以获得不同成像平面的二维图像序列。在图像中预定的斑点与在组织中超声处理的斑点之间的未对准可导致靶标体积之外的正常组织的消融,因此不可避免地出现了靶标误差。内部放置两个平头螺栓的丙烯酸板可用于测量和校准瞄准误差。以30°的步进将成像平面从-90°切换到90°,并且在校准之前和之后针对这些平面中的每一个测量了12次瞄准误差。可以使用最近的两个成像平面中的测量误差,通过线性插值法估计其他成像平面中的瞄准误差。考虑到所选成像平面中的瞄准误差,对要超声处理的斑点的坐标进行了校正。校准后,平均瞄准误差从0.86〜1.74 mm降低至0.30〜0.68 mm。此外,在离体实验中,将针-热电偶尖端用作可以在图像中识别的目标。在超声处理过程中,热电偶测得的温升与理论结果相符。总之,对目标误差的校准对于我们的系统是有效的,并且目标定位精度也能够确保安全的超声处理。

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