Dielectric Stability of Triton X-100-Based Tissue-Mimicking Materials for Microwave Imaging

Mariana Relva, S. Devesa
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Abstract

Microwave imaging is an emerging technology, and has been proposed for various applications, namely as an alternative diagnostic technology. Microwave imaging explores the dielectric contrast of target tissues, enabling diagnosis based on the differences in dielectric properties between healthy and diseased tissues, with low cost, portability and non-ionizing radiation as its main advantages, constituting an alternative to various imaging technologies for diagnosing and monitoring. Before clinical trials of microwave imaging devices for the study of dielectric properties, phantoms are used, mimicking the materials of tissues and simulating the electric properties of human tissues, for device validation. The purpose of this work was to prepare and perform dielectric characterization of mimicking materials for the development of an anthropomorphic phantom of the human ankle with realistic dielectric and anatomic properties. The biological tissues targeted in this investigation were the skin, muscle, cortical bone, trabecular bone and fat, with the mimicking materials prepared using Triton X-100, sodium chloride and distilled water. The dielectric characterization was performed using a coaxial probe, operating at frequencies between 0.5 and 4.0 GHz. Since the stability of the dielectric properties of mimicking materials is one of their main properties, the dielectric characterization was repeated after 15 and 35 days.
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基于Triton x -100的微波成像组织模拟材料介电稳定性研究
微波成像是一项新兴技术,已被提出用于各种应用,即作为一种替代诊断技术。微波成像通过探索靶组织的介电特性,根据健康组织和病变组织介电特性的差异进行诊断,具有成本低、便携、无电离辐射等主要优点,是各种成像技术诊断和监测的替代方案。在研究介电特性的微波成像设备的临床试验之前,使用幻影来模拟组织材料和模拟人体组织的电学特性,以进行设备验证。这项工作的目的是准备和执行模拟材料的介电特性,以开发具有真实介电和解剖特性的拟人踝关节幻影。本研究的目标生物组织为皮肤、肌肉、皮质骨、骨小梁和脂肪,模拟材料采用Triton X-100、氯化钠和蒸馏水制备。介质特性使用同轴探针进行,工作频率在0.5和4.0 GHz之间。由于模拟材料介电性能的稳定性是其主要性能之一,因此在15天和35天后重复介电性能表征。
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