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不同升温速率下 500 kHz 以下离体猪肝介电特性研究。

Dielectric Properties of Ex Vivo Porcine Liver Tissue Characterized at Frequencies Between 5 and 500 kHz When Heated at Different Rates.

出版信息

IEEE Trans Biomed Eng. 2018 Nov;65(11):2560-2568. doi: 10.1109/TBME.2018.2807981. Epub 2018 Feb 19.

Abstract

OBJECTIVE

The released energy during radio frequency thermal ablation therapy changes the dielectric properties of biological tissues. Understanding changes of dielectric properties of biological tissues during heating is fundamental to suitably model the medical procedure. The aim of this work is to obtain the thermal dependences of conductivity and permittivity of ex vivo porcine liver tissue at six frequencies from 5 to 500 kHz, during heating from 37 °C to 100 °C at three heating rates of approximately 0.1, 3, and 10 °C/min.

METHODS

Two experimental setups using different heating sources and a four-needle electrode connected to an impedance analyzer were developed to evaluate the thermal dependencies.

RESULTS

The results at a body temperature of 37 °C show a good agreement with the data reported in the literature. The conductivity initially shows an increase followed by a decrease, whereas the permittivity increases before a subsequent sharp decrease. Above 60 °C, different trends are observed for the three heating rates studied.

CONCLUSION

The electric conductivity and permittivity show a similar behavior at all evaluated frequencies and heating rates. The observed abrupt change of the slope near 45 °C at a slow heating rate may be used to identify the region of reversible changes in the tissue.

SIGNIFICANCE

These results confirm the connection among tissue dielectric properties, working frequency, and exposure time with thermal damage during heating.

摘要

目的

射频热消融治疗过程中释放的能量会改变生物组织的介电特性。了解加热过程中生物组织介电特性的变化对于合适地模拟医疗过程至关重要。本工作旨在获得离体猪肝组织在 5 至 500 kHz 六个频率下的热导率和介电常数随温度的变化关系,加热速率分别约为 0.1、3 和 10°C/min,从 37°C 加热至 100°C。

方法

开发了两种使用不同加热源和连接到阻抗分析仪的四针电极的实验装置来评估热依赖性。

结果

在体温为 37°C 时的结果与文献中报道的数据吻合良好。电导率最初呈上升趋势,随后下降,而介电常数在随后的急剧下降之前先增加。在 60°C 以上,在研究的三种加热速率下观察到不同的趋势。

结论

在所有评估的频率和加热速率下,电导率和介电常数表现出相似的行为。在缓慢加热速率下,斜率在 45°C 附近的急剧变化可能用于识别组织中可逆变化的区域。

意义

这些结果证实了组织介电特性、工作频率和暴露时间与加热过程中热损伤之间的联系。

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