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               REFERENCES
               1.       Alberts B, Heald R, Johnson A, et al. Molecular biology of the cell. 7th ed. New York, NY: Worldwide. Norton & Company; 2022.
                    Available from: https://wwnorton.com/books/9780393884821. [Last accessed on 14 Aug 2023].
               2.       Lenau T, Stroble J, Stone R, Watkins S. An overview of biomimetic sensor technology. Sensor Rev 2009;29:112-9.  DOI
               3.       Kandel ER, Koester JD, Mack SH, Siegelbaum SA. Principles of neural science. 6th ed. New York, NY: McGraw Hill; 2021.
                    Available from: https://www.mheducation.co.uk/principles-of-neural-science-sixth-edition-9781259642234-emea. [Last accessed on
                    14 Aug 2023].
               4.       French AS, Torkkeli PH. Sensory receptors and mechanotransduction. In: Sperelakis N, editor. Cell Physiology Source Book.
                    Elsevier; 2012. p. 633-47. Available from: https://edisciplinas.usp.br/pluginfile.php/5123031/mod_resource/content/2/Nicholas%
                    20Sperelakis-Cell%20Physiology%20Source%20Book%2C%20Fourth%20Edition_%20Essentials%20of%20Membrane%
                    20Biophysics-Academic%20Press%20%282012%29.pdf. [Last accessed on 14 Aug 2023].
               5.       Willis WD, Coggeshall RE. Sensory receptors and peripheral nerves. In: Sensory Mechanisms of the Spinal Cord. Boston: Springer
                    US; 2004. p. 19-90.  DOI
               6.       Abraira VE, Ginty DD. The sensory neurons of touch. Neuron 2013;79:618-39.  DOI  PubMed  PMC
               7.       Chapleau MW, Sabharwal R. Methods of assessing vagus nerve activity and reflexes. Heart Fail Rev 2011;16:109-27.  DOI  PubMed
                    PMC
               8.       Proske U, Gandevia SC. The proprioceptive senses: their roles in signaling body shape, body position and movement, and muscle
                    force. Physiol Rev 2012;92:1651-97.  DOI  PubMed
               9.       Kobayashi S. Temperature receptors in cutaneous nerve endings are thermostat molecules that induce thermoregulatory behaviors
                    against thermal load. Temperature 2015;2:346-51.  DOI  PubMed  PMC
               10.       Wong KY. A retinal ganglion cell that can signal irradiance continuously for 10 hours. J Neurosci 2012;32:11478-85.  DOI  PubMed
                    PMC
               11.       Tricas TC, Carlson BA. Electroreceptors and magnetoreceptors. In: Cell Physiology Source Book. Elsevier; 2012. p. 705-25.  DOI
               12.       Winklhofer M, Kirschvink JL. A quantitative assessment of torque-transducer models for magnetoreception. J R Soc Interface 2010;7
                    Suppl 2:S273-89.  DOI  PubMed  PMC
               13.       Wang J, Wang C, Cai P, et al. Artificial sense technology: emulating and extending biological senses. ACS Nano 2021;15:18671-8.
                    DOI
               14.       Lee Y, Park J, Choe A, Cho S, Kim J, Ko H. Mimicking human and biological skins for multifunctional skin electronics. Adv Funct
                    Mater 2020;30:1904523.  DOI
               15.       Someya T, Bao Z, Malliaras GG. The rise of plastic bioelectronics. Nature 2016;540:379-85.  DOI  PubMed
               16.       Hong SY, Lee YH, Park H, et al. Stretchable active matrix temperature sensor array of polyaniline nanofibers for electronic skin. Adv
                    Mater 2016;28:930-5.  DOI
               17.       Zhang C, Ye WB, Zhou K, et al. Bioinspired artificial sensory nerve based on nafion memristor. Adv Funct Mater 2019;29:1808783.
                    DOI
               18.       Murray AR, Fliesler SJ, Al-Ubaidi MR. Rhodopsin: the functional significance of asn-linked glycosylation and other post-
                    translational modifications. Ophthalmic Genet 2009;30:109-20.  DOI  PubMed  PMC
               19.       Kibenge FS, Strange RJ. Introduction to the anatomy and physiology of the major aquatic animal species in aquaculture. In:
                    Aquaculture Pharmacology. Elsevier; 2021. p. 1-111.  DOI
               20.       Zimmerman A, Bai L, Ginty DD. The gentle touch receptors of mammalian skin. Science 2014;346:950-4.  DOI  PubMed  PMC
               21.       Chandrashekar J, Hoon MA, Ryba NJ, Zuker CS. The receptors and cells for mammalian taste. Nature 2006;444:288-94.  DOI
                    PubMed
                                      2+       -
               22.       Reisert J, Reingruber J. Ca -activated Cl  current ensures robust and reliable signal amplification in vertebrate olfactory receptor
                    neurons. Proc Natl Acad Sci U S A 2019;116:1053-8.  DOI  PubMed  PMC
               23.       Mittal R, Nguyen D, Patel AP, et al. Recent advancements in the regeneration of auditory hair cells and hearing restoration. Front
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