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首页> 外文期刊>Magnetic resonance in medicine: official journal of the Society of Magnetic Resonance in Medicine >Active microcoil tracking in the lungs using a semisolid rubber as signal source.
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Active microcoil tracking in the lungs using a semisolid rubber as signal source.

机译:使用半固态橡胶作为信号源,主动跟踪肺中的微线圈。

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摘要

A new method to localize and track medical devices in air-filled body cavities is proposed that uses active microcoils with a semisolid filling. In air spaces, e.g., the lung, microcoils require an independent signal source, which should be made of a biocompatible, solid and sterilizable material with a long shelf time. In a measurement of the T(1) and T*(2) and the relative spin density of several semisolid materials, latex was identified as a suitable material from which a prototype catheter was constructed with a microcoil at its tip. In a dual-echo tracking pulse sequence, the very short T*(2) of the rubber material allowed suppressing the background signal from surrounding tissue with a subtraction technique and additional dephasing gradients. With a roadmapping reconstruction, the microcoil's trajectory could be visualized on a previously acquired reference image set with a tracking rate of up to 60 Hz at a spatial resolution of better than 2mm. In a real-time tracking implementation, an image update rate of 4 Hz was achieved by combining the tracking with a fast real-time imaging sequence. Both methods were successfully applied in vivo to track the catheter in the lung of a pig.
机译:提出了一种在充满空气的体腔中定位和跟踪医疗设备的新方法,该方法使用具有半固态填充物的有源微线圈。在空气空间(例如肺)中,微线圈需要一个独立的信号源,该信号源应由具有生物相容性,固体且可灭菌的材料制成,并具有较长的保存时间。在测量T(1)和T *(2)以及几种半固体材料的相对自旋密度时,乳胶被确定为合适的材料,可在该材料中构建带有微型线圈的原型导管。在双回波跟踪脉冲序列中,橡胶材料的非常短的T *(2)允许通过减法技术和附加的移相梯度来抑制周围组织的背景信号。通过路线图重建,可以在先前获取的参考图像集上以高达60 Hz的跟踪速率以优于2mm的空间分辨率可视化微线圈的轨迹。在实时跟踪实现中,通过将跟踪与快速实时成像序列相结合,可实现4 Hz的图像更新速率。两种方法均已成功应用于体内,以追踪猪肺中的导管。

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