School of Computational and Integrative Sciences, Jawaharlal Nehru University, New Delhi, 110067, India.
Dr. B R Ambedkar National Institute of Technology, Jalandhar (Punjab), 144011, India.
Sci Rep. 2022 Feb 24;12(1):3165. doi: 10.1038/s41598-022-06904-2.
The leadless cardiac pacemaker is a pioneering device for heart patients. Its rising success requires the design of compact implantable antennas. In this paper, we describe a circularly polarized Hilbert curve inspired loop antenna. The proposed antenna works in the WMTS (Wireless Medical Telemetry Services) 1.4 GHz and ISM (Industrial, Scientific, and Medical) 2.45 GHz bands. High dielectric constant material Rogers RT/Duroid 6010 LM ([Formula: see text]=10) and fractal geometry helps to design the antenna with a small footprint of 9.1 mm (6 mm × 6 mm × 0.254 mm). The designed antenna has a conformal shape that fits inside a leadless pacemaker's capsule is surrounded by IC models and battery, which are tightly packed in the device enclosure. Subsequently, the integrated prototype is simulated deep inside at the center of the multi-layer canonical heart model. To verify experimentally, we have put dummy electronics (IC and battery) inside the 3D printed pacemaker's capsule and surfaced the fabricated conformal antenna around the inner curved body of the TCP (Transcatheter Pacing) capsule. Furthermore, we have tested the TCP capsule by inserting it in a ballistic gel phantom and minced pork. The measured impedance bandwidths at 1.4 GHz and 2.45 GHz are 250 MHz and 430 MHz, whereas measured gains are - 33.2 dBi, and - 28.5 dBi, respectively.
无导线心脏起搏器是心脏病患者的开创性设备。其日益成功需要设计紧凑的植入式天线。在本文中,我们描述了一种基于圆极化希尔伯特曲线的环形天线。所提出的天线工作在 WMTS(无线医疗遥测服务)1.4GHz 和 ISM(工业、科学和医疗)2.45GHz 频段。高介电常数材料 Rogers RT/Duroid 6010 LM ([Formula: see text]=10) 和分形几何有助于设计具有小足迹的天线,其足迹为 9.1mm(6mm×6mm×0.254mm)。设计的天线具有共形形状,适合放置在无导线起搏器胶囊内,胶囊周围是 IC 模型和电池,这些模型和电池被紧密地放置在设备外壳内。随后,将集成原型在多层典型心脏模型的中心进行了深入模拟。为了进行实验验证,我们在 3D 打印的起搏器胶囊内放置了虚拟电子设备(IC 和电池),并在 TCP(经导管起搏)胶囊的内部曲形表面制作了共形天线。此外,我们通过将 TCP 胶囊插入弹道凝胶体模和碎猪肉中进行了测试。在 1.4GHz 和 2.45GHz 处测量的阻抗带宽分别为 250MHz 和 430MHz,而测量的增益分别为-33.2dBi 和-28.5dBi。