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首页> 外文期刊>Physics in medicine and biology. >Experimental examination of a targeted hyperthermia system using inductively heated ferromagnetic microspheres in rabbit kidney.
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Experimental examination of a targeted hyperthermia system using inductively heated ferromagnetic microspheres in rabbit kidney.

机译:使用感应加热的铁磁微球在兔肾中靶向热疗系统的实验检查。

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摘要

It is known that significant heating can be generated by magnetic hysteresis effects in small ferromagnetic particles exposed to a rapidly alternating magnetic field. If such particles can be made to infiltrate the vascular bed surrounding a tumour by intravascular infusion then it may be possible to generate sufficient heating to destroy the tumour by hyperthermia. One of the constraints on such a technique is the limited amount of magnetic material that can be delivered to a tumour via the intravascular route and the consequent heating that can be induced by this material. Here, we report on a series of experiments in which doses of microspheres containing different amounts of ferromagnetic material were infused into rabbit kidneys via the renal artery with the aim of testing whether adequate tissue heating could be achieved using realistic concentrations of the embolised material. Heating rates were measured for each infused quantity under similar conditions with the animal alive and dead to examine the role of blood flow in the heating process. The results show that tissue temperatures above the therapeutic threshold of 42 degrees C can be readily achieved using this method with clinically relevant concentrations of microspheres in living tissue.
机译:众所周知,在暴露于快速交变磁场的小铁磁颗粒中,磁滞效应会产生明显的热量。如果可以通过血管内输注使此类颗粒浸润肿瘤周围的血管床,则可能会产生足够的热量以通过热疗破坏肿瘤。这种技术的局限性之一是可以通过血管内途径传递给肿瘤的磁性材料数量有限,并且随之而来的是由这种材料引起的发热。在这里,我们报告了一系列实验,其中通过肾脏动脉将一定剂量的含有不同量铁磁材料的微球体注入兔肾,目的是测试使用实际浓度的栓塞材料是否可以实现足够的组织加热。在动物存活和死亡的情况下,在相似的条件下测量每个输注量的加热速率,以检查血液在加热过程中的作用。结果表明,使用这种方法在活组织中具有临床相关浓度的微球体时,可以轻松达到高于42摄氏度治疗阈值的组织温度。

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