Page 32 - ITU Journal Future and evolving technologies Volume 2 (2021), Issue 3 – Internet of Bio-Nano Things for health applications
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ITU Journal on Future and Evolving Technologies, Volume 2 (2021), Issue 3
[94] Josep Miquel Jornet and Ian F Akyildiz. “Funda‑ [105] G Enrico Santagati and Tommaso Melodia. “Ex‑
mentals of electromagnetic nanonetworks in the perimental evaluation of impulsive ultrasonic
terahertz band”. In: Foundations and Trends® in intra‑body communications for implantable
Networking 7.2‑3 (2013), pp. 77–233. biomedical devices”. In: IEEE Transactions on
Mobile Computing 16.2 (2016), pp. 367–380.
[95] Ignacio Llatser, Christian Kremers, Albert
[106] G Enrico Santagati and Tommaso Melodia. “Optou‑
Cabellos‑Aparicio, Josep Miquel Jornet, Eduard
ltrasonic communications for wireless intra‑
Alarc n, and Dmitry N Chigrin. “Graphene‑based
body nanonetworks”. In: Nano Communication
nano‑patch antenna for terahertz radiation”. In:
Networks 5.1‑2 (2014), pp. 3–14.
Photonics and Nanostructures‑Fundamentals and
Applications 10.4 (2012), pp. 353–358. [107] Murat Kuscu and Ozgur B Akan. “A physical chan‑
nel model and analysis for nanoscale molecular
[96] M Rosenau Da Costa, OV Kibis, and ME Portnoi.
communications with Fö rster resonance energy
transfer (FRET)”. In: IEEE Transactions on Nano‑
“Carbon nanotubes as a basis for terahertz emit‑
ters and detectors”. In: Microelectronics Journal
technology 11.1 (2011), pp. 200–207.
40.4‑5 (2009), pp. 776–778.
[108] Murat Kuscu and Ozgur B Akan. “The Internet of
[97] Josep Miquel Jornet and Ian F Akyildiz. molecular things based on FRET”. In: IEEE Inter‑
“Femtosecond‑long pulse‑based modulation net of Things Journal 3.1 (2015), pp. 4–17.
for terahertz band communication in nanonet‑
[109] Murat Kuscu and Ozgur B Akan. “A communica‑
works”. In: IEEE Transactions on Communications
tion theoretical analysis of FRET‑based mobile ad
62.5 (2014), pp. 1742–1754. hoc molecular nanonetworks”. In: IEEE transac‑
[98] Hakim Mabed. “Enhanced spread in time on‑off tions on nanobioscience 13.3 (2014), pp. 255–266.
keying technique for dense Terahertz nanonet‑ [110] Murat Kuscu and Ozgur B Akan. “Coverage
works”. In: 2017 IEEE Symposium on Computers and throughput analysis for FRET‑based mobile
and Communications (ISCC). IEEE. 2017, pp. 710– molecular sensor/actor nanonetworks”. In: Nano
716. Communication Networks 5.1‑2 (2014), pp. 45–
53.
[99] Arjun Singh, Michael Andrello, Ngwe Thawdar,
[111] Murat Kuscu and Ozgur B Akan. “Multi‑step
and Josep Miquel Jornet. “Design and operation
FRET‑based long‑range nanoscale communica‑
of a graphene‑based plasmonic nano‑antenna ar‑
tion channel”. In: IEEE Journal on Selected Areas
ray for communication in the terahertz band”. In:
in Communications 31.12 (2013), pp. 715–725.
IEEE Journal on Selected Areas in Communications
38.9 (2020), pp. 2104–2117. [112] Murat Kuscu and Ozgur B Akan. “FRET‑based
nanoscale point‑to‑point and broadcast com‑
[100] Hakim Mabed and Julien Bourgeois. “A le xible
munications with multi‑exciton transmission
medium access control protocol for dense tera‑
and channel routing”. In: IEEE transactions on
hertz nanonetworks”. In: Proceedings of the 5th nanobioscience 13.3 (2014), pp. 315–326.
ACM International Conference on Nanoscale Com‑
[113] Murat Kuscu, Alper Kiraz, and Ozgur B Akan.
puting and Communication. 2018, pp. 1–7.
“Fluorescent molecules as transceiver nanoan‑
[101] Anish Prasad Shrestha, Sang‑Jo Yoo, Hyoung Jin tennas: The irst practical and high‑rate infor‑
Choi, and Kyung Sup Kwak. “Enhanced rate divi‑ mation transfer over a nanoscale communication
sion multiple access for electromagnetic nanonet‑ channel based on FRET”. In: Scienti ic reports 5.1
works”. In: IEEE Sensors Journal 16.19 (2016), (2015), pp. 1–6.
pp. 7287–7296.
[114] Falko Dressler and Stefan Fischer. “Connecting in‑
[102] Tad Hogg and Robert A Freitas Jr. “Acoustic com‑ body nano communication with body area net‑
munication for medical nanorobots”. In: Nano works: Challenges and opportunities of the Inter‑
Communication Networks 3.2 (2012), pp. 83–102. net of Nano Things”. In: Nano Communication Net‑
works 6.2 (2015), pp. 29–38.
[103] G Enrico Santagati, Tommaso Melodia, Laura Gal‑
[115] Meltem Civas, Oktay Cetinkaya, Murat Kuscu, and
luccio, and Sergio Palazzo. “Ultrasonic networ-
Ozgur B Akan. “Universal Transceivers: Opportu‑
king for e‑health applications”. In: IEEE
nities and Future Directions for the Internet of
Wireless Communications 20.4 (2013), pp. 74–81.
Everything (IoE)”. In: Frontiers in
[104] G Enrico Santagati, Tommaso Melodia, Laura Gal‑ Communi-cations and Networks 2.50 (2021), pp.
luccio, and Sergio Palazzo. “Medium access con‑ 1–20.
trol and rate adaptation for ultrasonic intrabody [116] Eric VanArsdale, Juliana Pitzer, Gregory F Payne,
sensor networks”. In: IEEE/ACM Transactions on and William E Bentley. “Redox Electrochemistry
Networking 23.4 (2014), pp. 1121–1134. to Interrogate and Control Biomolecular Commu‑
nication”. In: Iscience 23.9 (2020), p. 101545.
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