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使用自适应纺织天线设计进行乳腺癌检测。

Breast Cancer Detection Using Adaptable Textile Antenna Design.

机构信息

Department of ECE, SSM Institute of Engineering and Technology, Dindigul, India.

出版信息

J Med Syst. 2019 May 9;43(6):177. doi: 10.1007/s10916-019-1314-5.

Abstract

In the field of medicinal applications, early / (Timely) detection of Breast cancer is a key diagnosing process which provides effective medical treatment and also reduces women mortality. Due to the advancement and growth of medical sciences, efficient antennas are needed for imaging, diagnosing and providing superior treatment to the patients. Since tumor is tiny in size at the early stage, the knowledge of its precise location is chiefly required. For this purpose several antennas with high accuracy are designed. Among them, Flexible antenna has several advantages compared to other antennas. The main advantage of flexible antenna is its simple construction, high gain and cost-efficiency. The proposed research work implements a novel flexible antenna for detection of early breast cancer, with and without tumor application. In the study, (for the sake of comprehensive analysis and accuracy / familiarity / simplicity), Jean material is used as dielectric substrate with dielectric constant 1.7. The flexible antennas are designed with a slot loaded over the patch and with ground plane that are made up of copper as the conducting material. The jeans cloth material with 1 mm thickness is considered as a substrate, which is to be placed on the breast surface. Co-axial feeding method is chosen for the proposed antenna which improves the antenna performance. In addition to this, the antenna is a wearable textile type designed for ISM (Industrial, Scientific and Medical) band 2.4 GHz applications. The antenna is simulated using HFSS (High Frequency Structure Spectrum) software. From the simulation analysis, Return loss (S), Gain in dB, Radiation pattern, axial ratio (AR) and VSWR are obtained and analyzed. Finally, the simulation results are compared with the existing methodologies.

摘要

在医学应用领域,早期(及时)发现乳腺癌是一个关键的诊断过程,它提供了有效的治疗方法,也降低了女性的死亡率。由于医学科学的进步和发展,需要高效的天线来进行成像、诊断和为患者提供更好的治疗。由于肿瘤在早期阶段很小,因此主要需要知道其精确位置。为此,设计了几种具有高精度的天线。其中,与其他天线相比,柔性天线具有几个优势。柔性天线的主要优势在于其结构简单、增益高且具有成本效益。本研究工作提出了一种用于早期乳腺癌检测的新型柔性天线,包括有无肿瘤应用。在研究中,(为了全面分析和准确性/熟悉度/简单性),Jean 材料被用作介电常数为 1.7 的介电基板。柔性天线采用在贴片上加载缝隙和由铜制成的接地平面的设计,铜是导电材料。牛仔裤布材料的厚度为 1 毫米,用作放置在乳房表面的基板。选择同轴线馈电方法用于所提出的天线,以提高天线性能。此外,该天线是为工业、科学和医疗(ISM)频段 2.4GHz 应用设计的可穿戴式纺织类型天线。该天线使用 HFSS(高频结构频谱)软件进行模拟。通过仿真分析,获得并分析了回波损耗(S)、增益(dB)、辐射图、轴比(AR)和电压驻波比(VSWR)。最后,将仿真结果与现有方法进行了比较。

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