首页> 外文期刊>International journal of hyperthermia: The official journal of European Society for Hyperthermic Oncology, North American Hyperthermia Group >Design and evaluation of an open-source, conformable skin-cooling system for body magnetic resonance guided focused ultrasound treatments
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Design and evaluation of an open-source, conformable skin-cooling system for body magnetic resonance guided focused ultrasound treatments

机译:用于体磁共振的开源,适系的皮肤冷却系统的设计与评价,引导聚焦超声处理

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Purpose Magnetic resonance guided focused ultrasound (MRgFUS) treatment of tumors uses inter-sonication delays to allow heat to dissipate from the skin and other near-field tissues. Despite inter-sonication delays, treatment of tumors close to the skin risks skin burns. This work has designed and evaluated an open-source, conformable, skin-cooling system for body MRgFUS treatments to reduce skin burns and enable ablation closer to the skin. Methods A MR-compatible skin cooling system is described that features a conformable skin-cooling pad assembly with feedback control allowing continuous flow and pressure maintenance during the procedure. System performance was evaluated with hydrophone, phantom and in?vivo porcine studies. Sonications were performed 10 and 5?mm from the skin surface under both control and forced convective skin-cooling conditions. 3D MR temperature imaging was acquired in real time and the accumulated thermal dose volume was measured. Gross analysis of the skin post-sonication was further performed. Device conformability was demonstrated at several body locations. Results Hydrophone studies demonstrated no beam aberration, but a 5–12% reduction of the peak pressure due to the presence of the skin-cooling pad assembly in the acoustic near field. Phantom evaluation demonstrated there is no MR temperature imaging precision reduction or any other artifacts present due to the coolant flow during MRgFUS sonication. The porcine studies demonstrated skin burns were reduced in size or eliminated when compared to the control condition. Conclusion An open-source design of an MRgFUS active skin cooling system demonstrates device conformability with a reduction of skin burns while ablating superficial tissues.
机译:目的磁共振引导聚焦超声(MRGFU)治疗肿瘤使用间超声延迟使热量从皮肤和其他近场组织消失。尽管超声迟缓延迟,但对皮肤灼伤的肿瘤的治疗仍然存在。这项工作已经设计和评估了用于身体MRGFUS治疗的开源,适当,皮肤冷却系统,以减少皮肤灼伤,使消融更接近皮肤。方法描述MR兼容的皮肤冷却系统,其特征在于,具有适形的皮肤冷却垫组件,其具有反馈控制,允许在过程中连续流动和压力维护。用水听器,幻像和体内猪研究评估系统性能。在控制和强制对流皮肤冷却条件下,在皮肤表面进行10和5Ωmm。 3D MR温度成像实时获得,并测量累积的热量体积。进一步进行皮肤后超声的总分析。在几个身体位置证明了器件符合性。结果水听物体研究表明,由于在声学靠近场附近的护肤垫组件存在,峰值压力降低了5-12%。幻像评估证明了MR温度成像精度还原或由于MRGFU超声处理期间的冷却剂流动而存在的任何其他伪像。猪研究表现出皮肤烧伤的尺寸或与控制条件相比减少或消除。结论MRGFUS活性皮肤冷却系统的开源设计表明,在烧蚀浅表组织的同时减少皮肤燃烧的装置形式。

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