基于可穿戴健康诊断系统的早期乳腺癌检测

S. M. A. Banu, K. M. A. Jeyanthi
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引用次数: 1

摘要

威胁女性生命的最普遍的癌症是乳腺癌。根据世卫组织2020年的统计数据,全球有230万妇女被诊断患有乳腺癌,68.5万妇女的死亡率被披露。本文探讨了基于可穿戴健康诊断系统(WHDS)的天线对早期乳腺癌的识别。传统方法的局限性在于其不舒适的测试设置,恐慌的环境和失败的结果。近年来,基于纺织品的微波成像天线开始用于乳腺早期癌细胞的检测。WHDS天线具有更宽的带宽、高分辨率、低比吸收率(SAR)、生物相容性和灵活性等要求。本研究基于纺织品天线,采用牛仔布衬底(介电常数= 1.67,厚度= 2 mm)对早期乳腺癌组织(EBCT)进行诊断。利用以下天线参数(回波损耗、e场、h场和SAR值),确定EBCT的位置和恶性程度。由于癌细胞的介电特性较高,因此有效介电常数对e场和SAR的影响较大。在上述参数的基础上,我们还对各种衬底材料(Denim、FR4和RT duroid)进行了比较,并选择了Denim作为我们的应用材料,因为它具有更高的反射系数和更宽的带宽。该天线的工作频率为2-4千兆赫。这种小型化天线的体积为30 × 28 × 2毫米。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Early Stage Breast Cancer Detection Using Wearable Health Diagnosis System
The most prevalent cancer that threatens women’s life is Breast cancer. According to WHO Statistics in 2020, 2.3 Million Women were diagnosed with Breast cancer and 685000 death rate were disclosed globally. In this paper, Wearable Health Diagnosis System (WHDS) based antenna for the identification of the early breast cancer is discussed. Conventional methods are limited by their uncomfortable testing setups, panic environment and failure in results. Recently, textile based antenna for microwave imaging stared to work on the detection of the cancer cells at the earlier stage in breast. WHDS antenna has the requirements of wider bandwidth, high resolution, low Specific Absorption Rate (SAR), bio compatibility, and flexibility. The proposed work is based on the textile antenna using Denim substrate (permittivity = 1.67, thickness = 2 mm) to diagnosis the Early Breast Cancer Tissues (EBCT). Using the following antenna parameters (return loss, E-filed, H-field and SAR values), the position and malignancy of the EBCT is identified. Since the dielectric properties of the cancer cells are high, the influence of the effective permittivity is higher on the E-field and SAR. Along with the above parameters, comparison of various substrate materials (Denim, FR4, and RT duroid) were also tested and Denim is selected for our application as it introduces greater reflection co-efficient and wider bandwidth. The proposed antenna is designed to operate at a frequency of 2–4 GHz. This miniaturised antenna has a volume of 30 × 28 × 2 mm3.
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