Faculty of Engineering, Rajamangala University of Technology Lanna, Chiang Mai 50300, Thailand.
Faculty of Engineering, King Mongkut's University of Technology North Bangkok, Bangkok 10800, Thailand.
Sensors (Basel). 2021 Jun 4;21(11):3897. doi: 10.3390/s21113897.
In light of the growth in demand for multiband antennas for medical applications, this research proposes a MICS/ISM meander-line microstrip antenna encapsulated in an oblong-shaped pod for use in diagnoses of the gastrointestinal tract. The proposed antenna is operable in the Medical Implant Communication System (MICS) and the Industrial, Scientific and Medical (ISM) bands. The antenna structure consists of a meander-line radiating patch, a flipped-L defected ground plane, and a loading resistor for antenna miniaturization. The MICS/ISM microstrip antenna encapsulated in an oblong-shaped pod was simulated in various lossy-material environments. In addition, the specific absorption rate (SAR) was calculated and compared against the IEEE C95.1 standard. For verification, an antenna prototype was fabricated and experiments carried out in equivalent liquid mixtures, the dielectric constants of which resembled human tissue. The measured impedance bandwidths (|| ≤ -10 dB) for the MICS and ISM bands were 398-407 MHz and 2.41-2.48 GHz. The measured antenna gains were -38 dBi and -13 dBi, with a quasi-omnidirectional radiation pattern. The measured SAR was substantially below the maximum safety limits. As a result, the described MICS/ISM microstrip antenna encapsulated in an oblong-shaped pod can be used for real-time gastrointestinal tract diagnosis. The novelty of this work lies in the use of a meander-line microstrip, flipped-L defected ground plane, and loading resistor to miniaturize the antenna and realize the MICS and ISM bands.
鉴于医疗应用对多频带天线的需求不断增长,本研究提出了一种用于胃肠道诊断的封装在长椭圆形荚中的 MICS/ISM 曲折线微带天线。所提出的天线可在医疗植入通信系统(MICS)和工业、科学和医疗(ISM)频段中工作。天线结构由曲折线辐射贴片、翻转 L 型缺陷地平面和用于天线小型化的加载电阻器组成。在各种有耗材料环境中对封装在长椭圆形荚中的 MICS/ISM 微带天线进行了仿真。此外,还计算了比吸收率(SAR)并与 IEEE C95.1 标准进行了比较。为了验证,制造了天线原型并在等效液体混合物中进行了实验,这些液体混合物的介电常数与人组织相似。MICS 和 ISM 频段的测量阻抗带宽(|| ≤ -10 dB)分别为 398-407 MHz 和 2.41-2.48 GHz。测量的天线增益分别为-38 dBi 和-13 dBi,具有准全向辐射模式。测量的 SAR 大大低于最大安全限制。因此,所描述的封装在长椭圆形荚中的 MICS/ISM 微带天线可用于实时胃肠道诊断。这项工作的新颖之处在于使用曲折线微带、翻转 L 型缺陷地平面和加载电阻器来实现天线小型化并实现 MICS 和 ISM 频段。