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Annular Slot Biomedical Antenna for Combined Microwave Heating and Infrared Thermography of the Tissue

机译:组合式微波加热和组织红外热成像的环形缝隙生物医学天线

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A previously introduced annular slot antenna (ASA), utilized for combined microwave heating and radiometry for blood perfusion measurement of tissues, is modified to replace microwave radiometry with infrared thermography. Infrared (IR) thermography is a more convenient and cost effective alternative to microwave radiometry for skin/superficial and small animal (such as mice and rat) applications. An area with removed metallization is introduced around the central axis of the circular shape ASA, used for heating at 2.4 GHz. The S11 resonance frequency and/or depth change with the size of this area. Moreover, a hole at the middle of this area, made across the antenna, from top to bottom, allows the infrared beam to reach the skin. Simulations and measurement show that the presence of this hole has minimal impact on the performance of the ASA in terms of S11 and specific absorption rate (SAR) profile. In addition, the preliminary result of an IR camera captured images for a heating episode (2 W, at 2.45 GHz), conducted on a tissue phantom, is reported. Temperature rise of 5.7°C after 1 minute is observed at the center of the hole.
机译:先前引入的环形缝隙天线(ASA),用于组合微波加热和辐射测量以测量组织的血液灌注,已进行了改进,以用红外热成像技术代替微波辐射测量。对于皮肤/浅表和小型动物(例如小鼠和大鼠)的应用,红外(IR)热成像是微波辐射测量的一种更方便,更经济的选择。围绕圆形ASA的中心轴引入去除金属化的区域,该区域用于以2.4 GHz进行加热。 S 11 共振频率和/或深度随该区域的大小而变化。此外,从天线的顶部到底部,在该区域的中间穿过天线形成一个洞,可以使红外线束到达皮肤。仿真和测量表明,就S而言,此孔的存在对ASA性能的影响最小。 11 和比吸收率(SAR)曲线。此外,据报道,红外热像仪捕获了针对组织体模进行的加热事件(在2.45 GHz下为2 W)的图像的初步结果。在孔中心观察到1分钟后温度上升5.7°C。

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