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20172020
most citedAnatomical Region-Specific In Vivo Wireless Communication Channel Characterization

43 citations · 105 across the 6 of their papers we have counts for

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eess.SP20204 cited

Securing the Insecure: A First-Line-of-Defense for Nanoscale Communication Systems Operating in THz Band

Waqas Aman, M. Mahboob Ur Rahman, Hassan T. Abbas +4

Nanoscale communication systems operating in Ter-ahertz (THz) band are anticipated to revolutionise the healthcaresystems of the future. Global wireless data traffic is undergoinga…

eess.SP20205 cited

Revolutionizing Future Healthcare using Wireless on the Walls (WoW)

Jalil ur Rehman Kazim, Tie Jun Cui, Ahmed Zoha +5

Following the standardization and deployment of fifth generation (5G) network, researchers have shifted their focus to beyond 5G communication. Existing technologies have brought f…

eess.SP201912 cited

A Comprehensive Survey on Hybrid Communication for Internet of Nano-Things in Context of Body-Centric Communications

Ke Yang, Dadi Bi, Yansha Deng +7

With the huge advancement of nanotechnology over the past years, the devices are shrinking into micro-scale, even nano-scale. Additionally, the Internet of nano-things (IoNTs) are…

eess.SP201943 cited

Anatomical Region-Specific In Vivo Wireless Communication Channel Characterization

Ali Fatih Demir, Q. H. Abbasi, Z. E. Ankarali +4

In vivo wireless body area networks (WBANs) and their associated technologies are shaping the future of healthcare by providing continuous health monitoring and noninvasive surgica…

eess.SP2018

Empty Substrate Integrated Waveguide-Fed MMW Aperture-Coupled Patch Antenna for 5G Applications

Zia Ullah Khan, Syeda Fizzah Jilani, Angel Belenguer +2

This paper introduces a microstrip square patch antenna with a novel low-cost and efficient feeding mechanism for millimetre-wave frequencies targeting at 28 GHz. The radiating pat…