首页> 外文期刊>IEEE Journal of Electromagnetics, RF and Microwaves in Medicine and Biology >Dielectric Characterization of Ex Vivo Ovine and Human Adrenal Glands for Microwave Thermal Ablation Applications
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Dielectric Characterization of Ex Vivo Ovine and Human Adrenal Glands for Microwave Thermal Ablation Applications

机译:<斜斜探的介电表征微波热消融应用的绵羊和人肾上腺腺体

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Historically, adrenal glands diseases causing hypertension, such as Primary Aldosteronism (PA), have been treated through pharmacotherapy or surgical resection. Given the shortcomings of the available treatment options, the interest in alternative and less invasive treatment modalities such as microwave ablation (MWA), has increased. In order to develop and optimize this novel electromagnetic-based therapy, an accurate knowledge of the dielectric properties of human adrenal glands, as well as preclinical animal models, is crucial. In particular, ovine models represent a feasible animal model to test the safety and performances of MWA. In this study, the dielectric properties of ovine adrenal glands and of normal and diseased human adrenal glands are characterized ex vivo in the microwave frequency range. The dielectric properties of the two functional tissues (cortex and medulla) composing ovine adrenal glands are measured using the open-ended coaxial probe technique and represented with a two pole Cole-Cole model in the frequency range from 0.5 GHz to 8 GHz. This paper presents the first dielectric data of normal and diseased human adrenal tissues, including a functioning adenoma responsible for PA and it compares the human data with data from the animal model.
机译:从历史上看,通过药物治疗或手术切除治疗导致高血压的肾上腺疾病,如原发性醛固酮(PA)。鉴于可用治疗方案的缺点,替代方案和较少的侵入性治疗方式如微波消融(MWA)的兴趣增加。为了开发和优化这种新的基于电磁的治疗,准确了解人肾上腺的介电学性质,以及临床前动物模型至关重要。特别是,绵羊模型代表了一种可行的动物模型,以测试MWA的安全性和性能。在该研究中,绵羊肾上腺和正常和患病人的肾上腺的介电性质在微波频率范围内表征了如exvivo。使用开口结束的同轴探针技术测量组成绵羊肾上腺的两个功能组织(皮质和髓质)的介电性质,并用频率范围为0.5GHz至8GHz的两个杆COLE-COLE模型表示。本文介绍了正常和患病人肾上腺组织的第一介电数据,包括负责PA的功能性腺瘤,并且它将人体数据与来自动物模型的数据进行比较。

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