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New Form Factors for Sensors and Field Generators of a Magnetic Tracking System

机译:磁跟踪系统传感器和场发生器的新尺寸

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摘要

Magnetic tracking systems can be considered an enabling technology for many image guided medical interventions, since they are not limited by line-of-sight requirements. This can allow a much deeper immersion of the technology into a particular medical navigation application. We demonstrate in this paper new prototype sensor and field generator form factors. Miniaturized sensors as small as 0.5 x 5 mm can allow integration of magnetic tracking systems into such instruments as biopsy needles, endoscopes, catheters, and guide wires. Sensors with hollow cores can surround instruments without taking up the space needed for other functions of the instrument. Such an approach shows that sensor miniaturization is not the only way to overcome space limitations in medical instruments. Flat field generators can simplify the setup of the tracking system and better optimize the location of the working volume relative to the field generator. For example, flat field generators could be built into surgical beds or into head rests. For the prototype systems considered in this paper, we discuss performance attributes such as their trueness, repeatability, and confidence limits in comparison to the standard field generator and sensors of the Aurora system of Northern Digital.
机译:磁跟踪系统可以被视为许多图像引导医疗干预的使能技术,因为它们不受视线要求的限制。这可以使该技术更深入地浸入特定的医疗导航应用程序中。我们在本文中演示了新的原型传感器和场发生器的外形尺寸。小巧的传感器,小至0.5 x 5 mm,可以将磁跟踪系统集成到诸如活检针,内窥镜,导管和导丝之类的仪器中。带空心传感器的传感器可以围绕仪器,而不会占用仪器其他功能所需的空间。这种方法表明,传感器小型化并不是克服医疗器械空间限制的唯一方法。平场发生器可以简化跟踪系统的设置,并更好地优化工作空间相对于场发生器的位置。例如,平场发生器可以内置在手术床或头枕中。对于本文中考虑的原型系统,我们将讨论性能属性,如它们的真实性,可重复性和置信度极限,以及与Northern Digital Aurora系统的标准场发生器和传感器相比。

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