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A novel calibration phantom for combining echocardiography with electromagnetic tracking

机译:一种用于将超声心动图与电磁跟踪相结合的新型校准模拟

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摘要

Ultrasound compounding techniques offer the possibility to enlarge the otherwise limited field of view of ultrasound. However, existing works mainly rely on larger ultrasound sensors. In this work, we attach electromagnetic (EM) tracking sensors to small tubular echo probes, namely an intracardiac echocardiographic (ICE) probe and a transesophageal echocardiographic (TEE) transducer. The EM tracking allows, when synchronized to the ultrasound, localization of the probes in either 5 DOF (Degrees of Freedom) or 6 DOF without line-of-sight requirement. For computation of the references between the two systems, we developed a novel customized 3D-printable phantom, which is especially convenient for tubular probes that acquire images laterally. Calibration with the phantom and 3D volume reconstruction was conducted in the Plus Toolkit. The volume reconstructor uses the captured position and orientation information to fuse 2D ultrasound slices into a compounded volume. Mean calibration error is below 2.5 mm for ICE and TEE. An accuracy evaluation of the 3D reconstruction using an object of known geometry revealed that tracking with 5 DOF provides unsatisfactory results, while the combination of 6 DOF and TEE achieved a mean absolute difference of 3.08 mm. Our calibration phantom fCal-Echo1.0 is openly available at http://perk-software.cs.queensu.ca/plus/doc/nightly/modelcatalog/.
机译:超声波复合技术提供了扩大其他有限的超声视野的可能性。然而,现有的作品主要依赖于较大的超声传感器。在这项工作中,我们将电磁(EM)跟踪传感器附接到小管状回声探针,即肠内超声心动图(ICE)探针和经疗法超声心动图(TEE)换能器。当与超声波同步时,EM跟踪允许在5 DOF(自由度)或6 DOF中的探针定位而没有视线要求。为了计算两种系统之间的参考,我们开发了一种新颖的定制3D可打印幻影,这对于横向获取图像的管状探针特别方便。在Plus Toolkit中进行了与幻像和3D卷重建的校准。体积重建器使用捕获的位置和方向信息来将2D超声切片熔化成复合体积。冰和发球台的平均校准误差低于2.5毫米。使用已知几何形状的对象对3D重建的准确性评估显示,用5 DOF跟踪提供不令人满意的结果,而6 DOF和TEE的组合实现了3.08mm的平均绝对差。我们的校准幻像FCAL-ECHO1.0可在http://perk-software.cs.queensu.ca/plus/doc/tearty/modelcatalog/上公开使用。

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