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Magnetic nanoparticle temperature estimation.

机译:磁性纳米粒子温度估算。

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摘要

The authors present a method of measuring the temperature of magnetic nanoparticles that can be adapted to provide in vivo temperature maps. Many of the minimally invasive therapies that promise to reduce health care costs and improve patient outcomes heat tissue to very specific temperatures to be effective. Measurements are required because physiological cooling, primarily blood flow, makes the temperature difficult to predict a priori. The ratio of the fifth and third harmonics of the magnetization generated by magnetic nanoparticles in a sinusoidal field is used to generate a calibration curve and to subsequently estimate the temperature. The calibration curve is obtained by varying the amplitude of the sinusoidal field. The temperature can then be estimated from any subsequent measurement of the ratio. The accuracy was 0.3 degree K between 20 and 50 degrees C using the current apparatus and half-second measurements. The method is independent of nanoparticle concentration and nanoparticle size distribution.
机译:作者们提出了一种测量磁性纳米粒子温度的方法,该方法可适用于提供体内温度图。许多有望降低医疗保健成本并改善患者预后的微创疗法将组织加热到非常特定的温度才有效。需要进行测量是因为生理冷却(主要是血液流动)使温度很难先验地预测。由磁性纳米颗粒在正弦场中产生的磁化强度的五次和三次谐波之比用于生成校准曲线并随后估算温度。通过改变正弦场的幅度获得校准曲线。然后可以从该比率的任何后续测量中估计温度。使用当前设备和半秒测量,精度为20至50摄氏度之间的0.3度K。该方法与纳米颗粒浓度和纳米颗粒尺寸分布无关。

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