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Hematologic characterization and 3D imaging of red blood cells using a Compressive Nano-antenna and ML-FMA modeling

机译:使用压缩纳米天线和ML-FMA模型对红细胞进行血液学表征和3D成像

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In vivo sensing and imaging of human tissues using micro- and/or nano-sensing platforms constitutes one of the biggest challenges in the field of bioengineering for the next several years or decades. Such sensing platforms mounted on micro- or nano- robots not only will enable real-time monitoring of biological tissues, but it may also play a pivotal role in the localization and treatment of cancerous cells inside of the human body. Enabled by the recent development of novel Compressive Antennas, in this paper we present some preliminary results showing the feasibility of hematologic characterization and 3D imaging of red blood cells affected by different disorders using a nano-sensing electromagnetic platform operating at optical frequencies.
机译:使用微和/或纳米感测平台的人体组织的体内感测和成像是未来几年或几十年的生物工程领域的最大挑战之一。此类安装在微型或纳米机器人上的传感平台不仅可以实现对生物组织的实时监控,而且在人体内癌细胞的定位和治疗中也可能起着举足轻重的作用。借助新型压缩天线的最新发展,本文提供了一些初步结果,这些结果显示了使用以光频率运行的纳米传感电磁平台对受不同疾病影响的红细胞进行血液学表征和3D成像的可行性。

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