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Anatomically and Dielectrically Realistic 2.5D 5-Layer Reconfigurable Head Phantom for Testing Microwave Stroke Detection and Classification

机译:用于测试微波冲程检测和分类的解剖学和介电逼真的2.5D 5层可重新配置头模体

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摘要

This work presents the design and manufacturing of an anatomically and dielectrically realistic layered phantom of the human head that allows the insertion of ischemic and hemorrhagic stroke phantom models. A 2.5D physical phantom was designed using a representative anatomical image of the human head, which was simplified into 5 different layers that mimic the scalp, skull, cerebrospinal fluid, brain, and stroke regions in terms of anatomy and dielectric properties. Apart from the brain phantom, all other layers consist of a mixture of polyurethane rubber, graphite powder, and carbon black powder. The brain phantom is in the liquid form to facilitate the insertion of different stroke models (ischemic or hemorrhagic) with different positions and shapes. Phantoms were designed with dielectric properties valid within the frequency range 0.5–3.0 GHz, which is relevant for microwave stroke detection and classification. Molds for casting individual parts of the phantom were printed in 3D. The presented phantom is suitable for the development and testing of microwave systems and algorithms used in the detection and classification of vascular events relevant to stroke diagnosis.
机译:这项工作介绍了人头部的解剖学和介质逼真分层幻影的设计和制造,其允许插入缺血性和出血性冲程模型。使用人头的代表性解剖图像设计了2.5D物理幻影,其被简化为5种不同的层,其模拟了头皮,颅骨,脑脊液,脑和中风区域的解剖和介电性能。除了脑幻影外,所有其他层都由聚氨酯橡胶,石墨粉和炭黑粉末的混合物组成。脑幻影是液体形式,以促进用不同位置和形状插入不同的行程模型(缺血性或出血)。幽灵设计有介电性能,频率范围为0.5-3.0GHz,其与微波冲程检测和分类相关。用于铸造幻影各个部件的模具以3D印刷。呈现的幻像适用于用于检测和分类与中风诊断的血管事件的微波系统和算法的开发和测试。

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