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Development of an Automatic Localization System of Magnetic Particles for Hyperthermia Therapy

机译:高温治疗磁性粒子自动定位系统的开发

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Magnetic hyperthermia is a promising cancer therapy gaining great interest in recent years. In this therapy, in addition to magnetic particles, important elements include techniques for detecting the position and temperature of magnetic particles in a tumor region in determining the effectiveness of therapeutic heating. In previous studies, we developed a low invasive heating and wireless temperature measurement system for magnetic hyperthermia using a ferromagnetic implant with low Curie temperature (FILCT). To make this approach feasible in clinical settings, a challenge remains when the FILCT injected into the tumor region deviates from the central axis of drive coil. As a result, the heating efficiency of FILCT and the temperature measurement accuracy of FILCT decrease. In this study, we develop an automatic localization system for magnetic particles. Using the constructed system, it was possible to automatically locate the position of magnetic particles with an accuracy below 1 mm in vitro by operating magnetic field supply and detection (MFSD) unit in two modes of coarse scanning (rotary scanning) and fine-tuned scanning (linear scanning) based on three pickup voltages induced in three pickup coils symmetrically installed inside drive coil.
机译:磁体热疗是一个有前途的癌症治疗,近年来令人兴趣。在该疗法中,除了磁性颗粒之外,重要的元素还包括用于检测肿瘤区域中磁性颗粒的位置和温度的技术,以确定治疗加热的有效性。在以前的研究中,我们使用具有低居里温度(FILCT)的铁磁植入物来开发出用于磁体热疗的低侵入性加热和无线温度测量系统。为了使这种方法在临床环境中可行,当喷射到肿瘤区域的滤波器偏离驱动线圈的中心轴线时,保持挑战。结果,线虫的加热效率和线虫的温度测量精度减少。在这项研究中,我们开发了一种用于磁性粒子的自动定位系统。使用构造的系统,可以在1 mm

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