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ITU Journal on Future and Evolving Technologies, Volume 2 (2021), Issue 3
[4] Tooba Khan, Meltem Civas, Oktay Cetinkaya, [16] C. F. Babbs and R. Shi. “Subtle Paranodal In‑
Naveed A Abbasi, and Ozgur B Akan. “Nanosensor jury Slows Impulse Conduction in a Mathemati‑
networks for smart health care”. In: Nanosensors cal Model of Myelinated Axons”. In: PLoS ONE 8.7
for Smart Cities. Elsevier, 2020, pp. 387–403. (2013), pp. 1–11.
[5] Meltem Civas and Ozgur B Akan. “Rate of Informa‑ [17] M. N. Rasband and J. S. Trimmer. “Developmental
tion Flow Across Layered Neuro‑Spike Network in clustering of ion channels at and near the node of
the Spinal Cord”. In: IEEE transactions on nanobio‑ Ranvier”. In: Developmental Biology 236.1 (2001),
science 19.3 (2020), pp. 368–377. pp. 5–16.
[6] Ozgur Baris Akan, Hamideh Ramezani, Meltem [18] Wilfrid Rall. “Core conductor theory and cable
Civas, Oktay Cetinkaya, Bilgesu Arif Bilgin, and properties of neurons”. In: Comprehensive physiol‑
Naveed Ahmed Abbasi. “Information and commu‑ ogy (2011).
nication theoretical understanding and treatment
[19] O. N. Favorsky. Thermal to Mechanical Energy Con‑
of spinal cord injuries: State‑of‑the‑art and re‑ version:EnginesandRequirements‑VolumeI.Paris:
search challenges”. In: IEEE Reviews in Biomedical Encyclopedia of Life Support Systems (EOLSS)
Engineering (2021). Publishers, 2009.
[7] Caglar Koca, Meltem Civas, Selin M Sahin, Onder [20] F. Gabbiani and S. Cox. Mathematics for Neuroscien‑
Ergonul, and Ozgur B Akan. “Molecular Communi‑ tists. London: Academic Press, 2010.
cation Theoretical Modeling and Analysis of SARS‑
CoV2 Transmission in Human Respiratory System”. [21] Charles F Babbs and Riyi Shi. “Subtle paranodal
In: IEEE Transactions on Molecular, Biological and injury slows impulse conduction in a mathemati‑
Multi‑Scale Communications (2021). cal model of myelinated axons”. In: PLoS One 8.7
(2013), e67767.
[8] Mladen Veletić, Pål Anders Floor, Zdenka Babić,
and Ilangko Balasingham. “Peer‑to‑peer communi‑ [22] A Aldo Faisal, Luc PJ Selen, and Daniel M Wolpert.
cation in neuronal nano‑network”. In: IEEE Trans‑ “Noise in the nervous system”. In: Nature reviews.
actions on Communications 64.3 (2016), pp. 1153– Neuroscience 9.4 (2008), p. 292.
1166. [23] Amit Manwani and Christof Koch. “Detecting and
[9] Eren Balevi and Ozgur B Akan. “A physical chan‑ estimating signals in noisy cable structures, I: Neu‑
nel model for nanoscale neuro‑spike communica‑ ronal noise sources”. In: Neural computation 11.8
tions”. In: IEEE Transactions on Communications (1999), pp. 1797–1829.
61.3 (2013), pp. 1178–1187. [24] A Aldo Faisal and Simon B Laughlin. “Stochastic
simulations on the reliability of action potential
[10] Derya Malak and Ozgur B Akan. “A communi‑
propagation in thin axons”. In: PLoS computational
cation theoretical analysis of synaptic multiple‑
biology 3.5 (2007), e79.
access channel in hippocampal‑cortical neurons”.
In: IEEE Transactions on communications 61.6 [25] John G Proakis and Masoud Salehi. Digital Commu‑
(2013), pp. 2457–2467. nications 5e. 2008.
[11] Hamideh Ramezani and Ozgur B Akan. “A Commu‑ [26] Ryosuke Matsumura, Hideaki Yamamoto, Takeshi
nication Theoretical Modeling of Axonal Propaga‑ Hayakawa, Shutaro Katsurabayashi, Michio Ni‑
tion in Hippocampal Pyramidal Neurons”. In: IEEE wano, and Ayumi Hirano‑Iwata. “Dependence and
Transactions on NanoBioscience (2017). homeostasis of membrane impedance on cell mor‑
[12] Alireza Khodaei and Massimiliano Pierobon. “An phology in cultured hippocampal neurons”. In: Sci‑
intra‑body linear channel model based on neu‑ enti ic reports 8.1 (2018), pp. 1–10.
ronal subthreshold stimulation”. In: Communica‑ [27] Srikantan S Nagarajan and Dominique M Durand.
tions (ICC), 2016 IEEE International Conference on. “Analysis of magnetic stimulation of a concentric
IEEE. 2016, pp. 1–7. axon in a nerve bundle”. In: IEEE Transactions on
[13] Peter Dayan and Laurence F Abbott. Theoretical Biomedical Engineering 42.9 (1995), pp. 926–933.
neuroscience. Vol. 806. [28] Keiichiro Susuki. “Myelin: a specialized membrane
[14] R. Shi and W. Sun. “Potassium channel blockers for cell communication”. In: Nature Education 3.9
as an effective treatment to restore impulse con‑ (2010), p. 59.
duction in injured axons”. In: Neuroscience Bulletin [29] Nicolas Snaidero and Mikael Simons. “Myelina‑
27.1 (2011), pp. 36–44. tion at a glance”. In: Journal of cell science 127.14
(2014), pp. 2999–3004.
[15] A. Ochab‑Marcinek, G. Schmid, I. Goychuk, and
P. Hänggi. “Noise‑assisted spike propagation in
myelinated neurons”. In: Physical Review E 79.1
(2009), pp. 011904‑1–7.
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