首页> 外文会议>Conference on Medical Imaging 2008: Visualization, Image-Guided Procedures, and Modeling; 20080217-19; San Diego,CA(US) >Method for evaluating compatibility of commercial Electromagnetic (EM) micro sensor tracking systems with surgical and imaging tables
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Method for evaluating compatibility of commercial Electromagnetic (EM) micro sensor tracking systems with surgical and imaging tables

机译:用于评估具有手术台和成像台的商用电磁(EM)微传感器跟踪系统的兼容性的方法

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摘要

Electromagnetic (EM) tracking systems have been successfully used for Surgical Navigation in ENT, cranial, and spine applications for several years. Catheter sized micro EM sensors have also been used in tightly controlled cardiac mapping and pulmonary applications. EM systems have the benefit over optical navigation systems of not requiring a line-of-sight between devices. Ferrous metals or conductive materials that are transient within the EM working volume may impact tracking performance. Effective methods for detecting and reporting EM field distortions are generally well known. Distortion compensation can be achieved for objects that have a static spatial relationship to a tracking sensor. New commercially available micro EM tracking systems offer opportunities for expanded image-guided navigation procedures. It is important to know and understand how well these systems perform with different surgical tables and ancillary equipment. By their design and intended use, micro EM sensors will be located at the distal tip of tracked devices and therefore be in closer proximity to the tables. Our goal was to define a simple and portable process that could be used to estimate the EM tracker accuracy, and to vet a large number of popular general surgery and imaging tables that are used in the United States and abroad.
机译:电磁(EM)跟踪系统已在ENT,颅骨和脊柱应用中成功用于手术导航。导管大小的微型EM传感器也已用于严格控制的心脏定位和肺部应用。与光学导航系统相比,EM系统的优势在于不需要设备之间的视线。在EM工作区内瞬态的黑色金属或导电材料可能会影响跟踪性能。检测和报告电磁场失真的有效方法通常是众所周知的。对于与跟踪传感器具有静态空间关系的对象,可以实现失真补偿。新的商用微型EM跟踪系统为扩展的图像引导导航程序提供了机会。重要的是要了解和理解这些系统在不同的手术台和辅助设备上的性能。通过其设计和预期用途,微型EM传感器将位于被跟踪设备的末端,因此更靠近桌子。我们的目标是定义一个简单且可移植的过程,以用于估计EM跟踪器的准确性,并审查在美国和国外使用的大量流行的普外科和成像台。

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