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Real-Time Estimation of 3-D Needle Shape and Deflection for MRI-Guided Interventions

机译:MRI指导下的3D针头形状和变形的实时估计

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We describe a MRI-compatible biopsy needle instrumented with optical fiber Bragg gratings for measuring bending deflections of the needle as it is inserted into tissues. During procedures, such as diagnostic biopsies and localized treatments, it is useful to track any tool deviation from the planned trajectory to minimize positioning errors and procedural complications. The goal is to display tool deflections in real time, with greater bandwidth and accuracy than when viewing the tool in MR images. A standard 18 ga $times$ 15 cm inner needle is prepared using a fixture, and 350-$mu$ m-deep grooves are created along its length. Optical fibers are embedded in the grooves. Two sets of sensors, located at different points along the needle, provide an estimate of the bent profile, as well as temperature compensation. Tests of the needle in a water bath showed that it produced no adverse imaging artifacts when used with the MR scanner.
机译:我们描述了一种配备有光纤布拉格光栅的MRI兼容活检针,用于测量将针插入组织时的弯曲挠度。在诸如诊断性活检和局部治疗等程序中,跟踪与计划轨迹的任何工具偏差对于最大程度地减少定位错误和程序并发症是很有用的。目标是实时显示工具偏斜,与在MR图像中查看工具时相比,具有更大的带宽和准确性。使用固定装置准备标准的18 ga x 15 cm内针,并沿其长度创建350-μm的深槽。光纤嵌入凹槽中。沿针位于不同点的两组传感器提供了弯曲轮廓的估计值以及温度补偿。在水浴中对针头进行的测试表明,与MR扫描仪一起使用时,不会产生不利的成像伪影。

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