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Accuracy Improvement of Low-Invasive Temperature Measurement for Hyperthermia Treatment Using a Ferromagnetic Implant with Low Curie Temperature

机译:使用低居里温度的铁磁植入物治疗热疗的低侵入温度测量的准确性提高

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We investigated a hyperthermia treatment method in which a ferromagnetic implant with a low Curie temperature (FILCT) is implanted into a malignant tumor and then a high-frequency magnetic field is applied outside the body. In earlier studies, we confirmed that the target temperature of the tumor can be noninvasively monitored by detecting changes in the magnetic field caused by changes in magnetic permeability. It was very difficult, however, to detect the FILCT temperature if the applied magnetic field was in an unstable state. Additionally, if the initial bias is higher, it is more difficult to detect the FILCT temperature because the resolution of the lock-in amplifier is reduced. In order to improve the accuracy of low-invasive temperature measurement, we formulated a method that reduces the drift in the pickup coil voltage caused by instability from the applied magnetic field. In addition, we experimentally confirmed that the influence of fluctuations in the applied magnetic field can be reduced by adjusting the initial bias value to close to 0 V.
机译:我们研究了一种热疗方法,其中将具有低居里温度的铁磁植入物(FILCT)植入到恶性肿瘤中,然后在体外施加高频磁场。在较早的研究中,我们证实可以通过检测由磁导率变化引起的磁场变化来无创地监测肿瘤的目标温度。但是,如果施加的磁场处于不稳定状态,则很难检测FILCT温度。另外,如果初始偏置较高,则由于锁定放大器的分辨率降低,因此检测FILCT温度更加困难。为了提高低侵入性温度测量的准确性,我们制定了一种方法来减少由于施加磁场的不稳定性而导致的拾波线圈电压漂移。另外,我们通过实验证实,通过将初始偏置值调整为接近0 V,可以减少施加磁场波动的影响。

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