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Development of Ti-Coated Ferromagnetic Needle Adaptable for Ablation Cancer Therapy by High-Frequency Induction Heating

机译:适用于高频感应​​加热消融癌治疗的钛涂层铁磁针的研制

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摘要

To develop a novel ablation therapy for human solid cancer, the heating properties of a ferromagnetic carbon steel rod and a prototype Ti-coated needle using this carbon steel rod, were investigated in several high-frequency outputs at 300 kHz. In the former, the heating property was drastically different among the three inclination angles (θ = 0°, 45° and 90°) relative to the magnetic flux direction as a result of the shape magnetic anisotropy. However, the effect of the inclination angles was completely eliminated in the latter. It is considered that the complete non-oriented heating property relative to the magnetic flux direction allows the precise control of the ablation temperature during minimally invasive thermotherapy without a lead-wire connected to a fiber-optic thermometer. This newly designed Ti-coated device will be suitable for clinical use combined with its superior biocompatibility for ablation treatments using high-frequency induction heating.
机译:为了开发一种用于人类实体癌的新型消融疗法,在300 kHz的几个高频输出中研究了铁磁碳钢棒和使用该碳钢棒的原型Ti涂层针的加热性能。在前者中,由于形状磁各向异性,相对于磁通量方向的三个倾斜角(θ= 0°,45°和90°)中的加热特性完全不同。但是,在后者中完全消除了倾斜角的影响。认为相对于磁通量方向的完全无方向性的加热特性允许在微创热疗期间精确控制消融温度,而无需将导线连接到光纤温度计。这种新设计的钛涂层设备将结合其卓越的生物相容性,适合临床使用,适用于使用高频感应加热的消融治疗。

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