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首页> 外文期刊>International journal of hyperthermia: The official journal of European Society for Hyperthermic Oncology, North American Hyperthermia Group >Anatomic thermochromic tissue-mimicking phantom of the lumbar spine for pre-clinical evaluation of MR-guided focused ultrasound (MRgFUS) ablation of the facet joint
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Anatomic thermochromic tissue-mimicking phantom of the lumbar spine for pre-clinical evaluation of MR-guided focused ultrasound (MRgFUS) ablation of the facet joint

机译:腰椎的解剖学热致中组织 - 模拟幽灵脊柱的临床评价MR引导的聚焦超声(MRGFU)消融方面关节

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Objective To develop a thermochromic tissue-mimicking phantom (TTMP) with an embedded 3D-printed bone mimic of the lumbar spine to evaluate MRgFUS ablation of the facet joint and medial branch nerve. Materials and methods Multiple 3D-printed materials were selected and characterized by measurements of speed of sound and linear acoustic attenuation coefficient using a through-transmission technique. A 3D model of the lumbar spine was segmented from a de-identified CT scan, and 3D printed. The 3D-printed spine was embedded within a TTMP with thermochromic ink color change setpoint at 60?°C. Multiple high energy sonications were targeted to the facet joints and medial branch nerve anatomical location using an ExAblate MRgFUS system connected to a 3T MR scanner. The phantom was dissected to assess sonication targets and the surrounding structures for color change as compared to the expected region of ablation on MR-thermometry. Results The measured sound attenuation coefficient and speed of sound of gypsum was 240?Np/m-MHz and 2471?m/s, which is the closest to published values for cortical bone. Following sonication, dissection of the TTMP revealed good concordance between the regions of color change within the phantom and expected areas of ablation on MR-thermometry. No heat deposition was observed in critical areas, including the spinal canal and nerve roots from either color change or MRI. Conclusion Ablated regions in the TTMP correlated well with expected ablations based on MR-thermometry. These findings demonstrate the utility of an anatomic spine phantom in evaluating MRgFUS sonication for facet joint and medial branch nerve ablations.
机译:目的旨在开发具有嵌入式3D印刷骨模拟腰椎的热致变色组织 - 模拟幻像(TTMP),以评估面部关节和内侧分支神经的MRGFU消融。材料和方法选择多个3D印刷材料,其特征在于使用通过传输技术测量声音和线性声学衰减系数的速度测量。腰椎的3D模型由DE-IDEDIFIDED CT扫描和印刷3D分段。 3D印刷脊柱嵌入TTMP内,在TTMP中,在60Ω℃下具有热致变色的墨水颜色变化设定点。使用连接到3T MR扫描仪的市场MRGFUS系统,将多个高能量超声靶向小关节和内侧分支神经解剖位置。与MR-Thermetry对MR-Thermetry的预期消融区域相比,对幽灵进行分析以评估超声靶和用于颜色变化的周围结构。结果测量的声音衰减系数和石膏的声音速度为240?NP / M-MHz和2471 M / s,这是皮质骨的最接近公布的值。超声处理后,TTMP的解剖揭示了在MR-Thermetry的幻影内的颜色变化区域与MR-Thermetry的预期区域之间的良好一致性。在关键区域中没有观察到热沉积,包括来自颜色变化或MRI的脊柱管和神经根。结论TTMP中的烧蚀区域与基于MR-Thermetry的预期消融相关。这些研究结果证明了解剖脊柱幻影在评估面部关节和内侧分支神经消融的MRGFU超声中的效用。

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