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ITU Journal on Future and Evolving Technologies, Volume 2 (2021), Issue 3
[157] Neeraj Varshney, Adarsh Patel, Werner Hasel‑ [166] Lin Qiu, Qiangyuan Zhu, Yibo Gao, Bingwen Yu,
mayr, Aditya K Jagannatham, Pramod K Varshney, Hao Ren, Wei Jin, Qinhan Jin, and Ying Mu. “Self‑
and Arumugam Nallanathan. “Impact of inter‑ priming compartmentalization digital LAMP for
mediate nanomachines in multiple cooperative single molecule detection”. In: 2012 Asia Commu‑
nanomachine‑assisted diffusion advection mobile nications and Photonics Conference (ACP). IEEE.
molecular communication”. In: IEEE Transactions 2012, pp. 1–3.
on Communications 67.7 (2019), pp. 4856–4871.
[167] Quan Wang and Behrouz Arash. “Nanoresonators
[158] L. Khaloopour, M. Mirmohseni, and M. Nasiri‑ in sensors and molecular transportation: An in‑
Kenari. “Cooperative Abnormality Detection in troduction to the possibilities of carbon nan‑
Fluidic Medium Molecular Communication”. In: otubes and graphene sheets”. In: IEEE Nanotech‑
2020 Iran Workshop on Communication and Infor‑ nology Magazine 8.4 (2014), pp. 29–37.
mation Theory (IWCIT). 2020, pp. 1–6. DOI: 10 .
[168] Mohiuddin Munna, Md Obidul Islam, Md Kabiruz‑
1109/IWCIT50667.2020.9163534.
zaman, and Zahid Hasan Mahmood. “Performance
[159] X. Wang, M. D. Higgins, and M. S. Leeson. “Distance analysis of a Si‑NW biosensor for detection of
Estimation Schemes for Diffusion Based Molecu‑ charged biomolecules”. In: 2014 International
lar Communication Systems”. In: IEEE Communi‑ Conference on Informatics, Electronics & Vision
cations Letters 19.3 (2015), pp. 399–402. DOI: 10. (ICIEV). IEEE. 2014, pp. 1–5.
1109/LCOMM.2014.2387826.
[169] Milan Sasmal, Tapas Kumar Maiti, and Tarun Kanti
[160] Z. Luo, L. Lin, Q. Fu, and H. Yan. “An Effective Dis‑ Bhattacharyya. “Conjugation of Bovine Serum Al‑
tance Measurement Method for Molecular Com‑ bumin With ZnO Nanosphere‑A Novel Approach
munication Systems”. In: 2018 IEEE International for Ultra‑Low Level Mercury Ion Detection”. In:
Conference on Sensing, Communication and Net‑ IEEE Transactions on NanoBioscience 15.7 (2016),
working (SECON Workshops). 2018, pp. 1–4. DOI: pp. 748–755.
10.1109/SECONW.2018.8396344.
[170] Laura Grebenstein, Jens Kirchner, Renata Stavra‑
[161] Z. Luo, L. Lin, W. Guo, S. Wang, F. Liu, and cakis Peixoto, Wiebke Zimmermann, Florian Irn‑
H. Yan. “One Symbol Blind Synchronization in storfer, Wayan Wicke, Arman Ahmadzadeh, Vahid
SIMO Molecular Communication Systems”. In: Jamali, Georg Fischer, Robert Weigel, et al. “Bio‑
IEEE Wireless Communications Letters 7.4 (2018), logical optical‑to‑chemical signal conversion in‑
pp. 530–533. DOI: 10.1109/LWC.2018.2793197. terface: A small‑scale modulator for molecu‑
lar communications”. In: IEEE Transactions on
[162] H. ShahMohammadian, G. G. Messier, and
NanoBioscience 18.1 (2018), pp. 31–42.
S. Magierowski. “Blind Synchronization in
Diffusion‑Based Molecular Communication Chan‑ [171] Laura Grebenstein, Jens Kirchner, Wayan Wicke,
nels”. In: IEEE Communications Letters 17.11 Arman Ahmadzadeh, Vahid Jamali, Georg Fischer,
(2013), pp. 2156–2159. DOI: 10 . 1109 / LCOMM . Robert Weigel, Andreas Burkovski, and Robert
2013.100713.131727. Schober. “A Molecular Communication Testbed
[163] V. Jamali, A. Ahmadzadeh, and R. Schober. “Sym‑ Based on Proton Pumping Bacteria: Methods and
bol Synchronization for Diffusion‑Based Molec‑ Data”. In: IEEE Transactions on Molecular, Biolog‑
ular Communications”. In: IEEE Transactions on ical and Multi‑Scale Communications 5.1 (2019),
NanoBioscience 16.8 (2017), pp. 873–887. DOI: pp. 56–62.
10.1109/TNB.2017.2782761. [172] Z Cao, C Qin, L Bi, Y Chen, Z Xie, and B Yao.
[164] L. Lin, W. Li, R. Zheng, F. Liu, and H. Yan. “Graphene enhanced intra‑resonator biochemical
“Diffusion‑Based Reference Broadcast Syn‑ detection with individual molecule sensitivity and
chronization for Molecular Communication selectivity”. In: 2019 18th International Confer‑
in Nanonetworks”. In: IEEE Access 7 (2019), ence on Optical Communications and Networks (IC‑
pp. 95527–95535. DOI: 10.1109/ACCESS.2019. OCN). IEEE. 2019, pp. 1–3.
2929873. [173] Chengjie Zhu, Yuhan Wen, Tao Liu, Haw Yang, and
[165] L. Huang, L. Lin, F. Liu, and H. Yan. “Clock Syn‑ Kaushik Sengupta. “A Packaged Ingestible Bio‑Pill
chronization for Mobile Molecular Communica‑ with 15‑Pixel Multiplexed Fluorescence Nucleic‑
tion Systems”. In: IEEE Transactions on NanoBio‑ Acid Sensor and Bi‑Directional Wireless Interface
science (2020), pp. 1–1. DOI: 10.1109/TNB.2020. for In‑Vivo Bio‑Molecular Sensing”. In: 2020 IEEE
3041631. Symposium on VLSI Circuits. IEEE. 2020, pp. 1–2.
[174] Na‑Rae Kim, Nariman Farsad, Chan‑Byoung Chae,
and Andrew W Eckford. “A universal channel
model for molecular communication systems
with metal‑oxide detectors”. In: 2015 IEEE
In Communications
(ICC). IEEE. 2015, pp. 1054–1059.
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