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Thermal Ablation Effects of Duplex Stainless Steel Thermo-lmplants

机译:双相不锈钢热管的热消融作用

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Thermal ablation of tumor hyperthermia is limited by exothermic properties of thermo-implants, manifested as magnetic properties, configurations and the power of induction heating system. Extensive research on biofunctionability test has led to use of duplex stainless steel as an exothermic material, but little work has been done on understanding the thermal ablation effect. The current study characterized the calorimetric test and heat affected zone (HAZ) of duplex stainless steel thermo-implants in vitro. The calorimetric test was performed within an induction heating coil system (7 kW, 104 kHz, 9 turns, 40cm diameter and 20cm height). Temperature data were collected from the three thermocouples seated inside of the calorimetric chamber and were recorded into a computer. The results show that the equilibrium temperature and the heating rate of thermo-implants depend upon the quantity of magnetic ferrite phase of duplex stainless steel. The larger volume of ferrite phase shows the higher saturation temperature and it can be controlled by a heat treatment method. The HAZ of thermo-implant during thermal ablation can be visualized using an egg protein model and a porcine liver tissue model. The egg protein test shows a color change from transparent to translucent during the experiment. The denatured depth of porcine liver tissue is about 4.0 mm for 30 minutes thermal ablation.
机译:肿瘤热疗的热消融受到热植入物放热特性的限制,表现为磁性,感应加热系统的结构和功率。关于生物功能测试的广泛研究导致使用双相不锈钢作为放热材料,但是在了解热消融效果方面做得很少。目前的研究表征了双相不锈钢热植入物的量热测试和热影响区(HAZ)。量热测试是在感应加热线圈系统(7 kW,104 kHz,9匝,40cm直径和20cm高)中进行的。从安装在量热室内的三个热电偶收集温度数据,并将其记录到计算机中。结果表明,热植入物的平衡温度和加热速率取决于双相不锈钢的磁性铁素体相数量。铁素体相的体积越大,表示饱和温度越高,可以通过热处理方法进行控制。可以使用卵蛋白模型和猪肝组织模型显示热消融过程中热植入物的热影响区。鸡蛋蛋白测试显示在实验过程中颜色从透明变半透明。在30分钟的热消融中,猪肝组织的变性深度为约4.0mm。

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