首页> 外文期刊>IEEE transactions on biomedical circuits and systems >Wearable Electromagnetic Head Imaging System Using Flexible Wideband Antenna Array Based on Polymer Technology for Brain Stroke Diagnosis
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Wearable Electromagnetic Head Imaging System Using Flexible Wideband Antenna Array Based on Polymer Technology for Brain Stroke Diagnosis

机译:基于聚合物技术的柔性宽带天线阵列可穿戴式电磁头成像系统在脑卒中诊断中的应用

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摘要

Given the increased interest in a fast, portable, and on-spot medical diagnostic tool that enables early diagnosis for patients with brain stroke, a new approach of a wearable electromagnetic head imaging system based on the polymer material is proposed. A flexible low-profile, wideband, and unidirectional antenna array with electromagnetic band gap (EBG) and metamaterial (MTM) unit cells reflector is utilized. The designed antenna consists of a 4 x 4 radiating patch loaded with symmetrical extended open-ended U-slots and fed by combination of series and corporate transmission lines. A mushroom-like 10-EBG unit cell arrays are arranged around the feeding network to reduce surface waves, whereas 4 x 4 MTM unit cells are placed on the back-side of the antenna to enable unidirectional radiation. The antenna is designed and embedded on a multilayer low cost, low loss, transparent, and robust polymer poly-di-methyl-siloxane (PDMS) substrate and optimized to operate in contact with the human head. The simulated and measured results show that the antenna has a fractional bandwidth of 53.8% (1.16-1.94 GHz), more than 80% of radiation efficiency, and satisfactory field penetration in the head tissues with a safe specific absorption rate. An eight-element array is then configured on 300 x 360 x 4.1 mm(3) PDMS material covering an average human head size and used as a worn part of the imaging system. A realistic-shaped 3-D specific anthropomorphic mannequin (SAM) head phantom is used to verify the performance of the designed array. The imaging results indicate the possibility of using the designed conformal array to detect a bleeding inside the brain using a confocal image algorithm.
机译:考虑到人们对快速,便携式,现场医疗诊断工具的兴趣日益增长,该工具可对脑卒中患者进行早期诊断,因此提出了一种基于聚合物材料的可穿戴式电磁头成像系统的新方法。利用了具有电磁带隙(EBG)和超材料(MTM)单位单元反射器的灵活的薄型,宽带,单向天线阵列。设计的天线由一个4 x 4辐射贴片组成,该贴片上装有对称的扩展的开放式U型槽,并通过串联和公司传输线的组合供电。蘑菇状的10-EBG晶胞阵列布置在馈电网络周围,以减少表面波,而4 x 4 MTM晶胞则放置在天线的背面,以实现单向辐射。该天线被设计并嵌入在多层低成本,低损耗,透明且坚固的聚合物聚二甲基硅氧烷(PDMS)基板上,并经过优化以与人的头部接触。仿真和测量结果表明,该天线的分数带宽为53.8%(1.16-1.94 GHz),辐射效率超过80%,并且在头部组织中具有令人满意的场穿透性,并具有安全的比吸收率。然后,在300 x 360 x 4.1 mm(3)PDMS材料上配置一个八元素阵列,该材料覆盖人的平均头部尺寸,并用作成像系统的磨损部分。使用逼真的形状的3D特定拟人化人体模型(SAM)头模来验证设计阵列的性能。成像结果表明,可以使用设计的共形阵列通过共聚焦图像算法检测大脑内部的出血。

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