Bioelectricity and biomagnetism as keys to realization of neurotechnology

Erwin Erwin, Erman Taer, Afrinal Afrinal

Abstract


The importance of bioelectricity and biomagnetism in neurotechnology has been outlined in this study. There are three main processes in neurotechnology, namely: signal delivery, data storage and data processing. These neurotechnological processes require three essential things, namely measurements, tools and materials. This scientific study describes the form of signal delivery in neurotechnology, the form of data storage and the form of data processing. The measurement methods that can be applied have also been described along with the tools and materials. Bioelectricity plays a very important role in building neurotechnology. Meanwhile, biomagnetism is an important aspect that cannot be separated from the phenomenon of bioelectricity which also supports systems in neurotechnology. The phenomena of bioelectricity and biomagnetism in neurotechnology are described in this study along with measurement devices and materials. Measuring devices and materials must be modified as conditions permit in their working conditions. It has also been studied that natural neurotechnological data storage in living creatures is through muscle memory, signal delivery occurs in the form of bioelectricity and data processing is a combination of data delivery and storage. This study also examines the future prospects of neurotechnology along with its moral aspects.

Keywords


Bioelectricity; biomagnetism; muscle memory; neurotechnology

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References


1. Stieglitz, T. (2021). Why Neurotechnologies? About the Purposes, Opportunities and Limitations of Neurotechnologies in Clinical Applications. Neuroethics, 14(1), 5–16.

2. Beck, S. (2021). Diffusion on Both Ends: Legal Protection and Criminalisation in Neurotechnological Uncertainty. In Clinical Neurotechnology meets Artificial Intelligence: Philosophical, Ethical, Legal and Social Implications, 127–139, Cham: Springer International Publishing.

3. Malmivuo, J. & Plonsey, R. (1995). Bioelectromagnetism: Principles and Applications of Bioelectric and Biomagnetic Fields. New York: Oxford University Press.

4. Finkelstein, G. (2013). Emil du Bois-Reymond: Neuroscience, Self, and Society in Nineteenth-Century Germany. Boston: MIT Press.

5. Lund, E. J. (1947). Bioelectric Fiends and Growth. LWW, 64(3), 253, Austin: University of Texas Press.

6. Burr, H. S. & Northrop, F. S. C. (1935). The Electro-Dynamic Theory of Life. The Quarterly Review of Biology, 10(3), 322–333.

7. Frayer, J. (2023). The History of Using Bioelectricity in Medicine. URL Access: https://www.rst sanexas.com/blog/the-history-of-using-bioe lectricity-in-medicine/

8. Jaffe, L. F. & Nuccitelli, R. (1974). An Ultrasensitive Vibrating Probe for Measuring Steady Extracellular Currents. The Journal of Cell Biology, 63(2), 614–628.

9. Nuccitelli, R. (1995). Endogenous Electric Fields Measured in Developing Embryos. Advances in Chemistry, 250. 109–124.

10. Park, S. H., Kim, E. H., Chang, H. J., Yoon, S. Z., Yoon, J. W., Cho, S. J., & Ryu, Y. H. (2013). History of Bioelectrical Study and the Electrophysiology of the Primo Vascular System. Evidence‐Based Complementary and Alternative Medicine, 2013(1), 486823.

11. Cohen, D. (2004). Boston and the History of Biomagnetism. Neurology and Clinical Neurophysiology, 114, 1–4.

12. Sternickel, K. & Braginski, A. I. (2006). Biomagnetism Using SQUIDs: Status and Perspectives. Superconductor Science and Technology, 19(3), S160.

13. Im, C. H., Jun, S. C., & Sekihara, K. (2017). Recent Advances in Biomagnetism and its Applications. Biomedical Engineering Letters, 7(3), 183–184.

14. Hatta, M. (1953). Bung Hatta's Speech: 2 Basics of Indonesia's Progress (1953). URL Access: https://www.youtube.com/watch?v=Oi_mj2z5S24

15. The United Nations (UN). (2016). Rate of Environmental Damage Increasing Across Planet but Still Time to Reverse Worst Impacts. URL Access: https://www.un.org/sustainable development/blog/2016/05/rate-of-environ mental-damage-increasing-across -planet-but-still-time-to-reverse-worst-impacts/

16. Worldometer. (2023). 2023 World Population. URL Access: https://www.worldometers.info/world-population/#:~:text=Population%20in%20the%20world%20is,it%20was%20at%20around%202%25.

17. Ritchie, H., Rodés-Guirao, L., Mathieu, E., Gerber, M., Ortiz-Ospina, E., Hasell, J., & Roser, M. (2023). Population Growth. URL Access: https://ourworldindata.org/population-growth

18. Bish, J. J. (2020). Overpopulation: Cause and Effect. URL Access: https://www.populationmedia.org/ the-latest/overpopulation-cause-and-effect

19. World Health Organization (WHO). (2023). Disability. URL Access: https://www.who.int/news-room/ fact-sheets/detail/disability-and-health

20. Haworth, M. (2018). Neurotechnology and the End of Finitude. Minneapolis: University of Minnesota Press.

21. Casey, E.J. (1962). Biophysics Concepts and Mechanisms. New York: Reinhold Publishing Corporation.

22. Science ABC. (2022). What Are Neurons and How Do They Work?. URL Access: https://www.youtube. com/watch?v=HUuUUJktL6E

23. Bear, M. F., Connors, B. W. , & Paradiso, M.A. (2016). Neuroscience Exploring the Brain. Philadelphia: Wolters Kluwer.

24. Krakauer, J. W. & Shadmehr, R. (2006). Consolidation of motor memory. Trends in Neurosciences, 29(1), 58–64.

25. Ehret, J. (2019). Using Neuroscience to Train Smarter, Not Harder. URL Access: https://www.swimm ingworldmagazine.com/news/using-neuroscience-to-train-smarter-notharder/#google _ vignette

26. McManus, M.R. (2023). What You Should Know About Muscle Memory to Help You Stay Fit. URL Access: https://edition.cnn.com/2023/06/21/health/muscle-memory-explainer-wellness/index. html

27. Kingston Technology Corporation. (2023). Storage Chart. URL Access: https://www.kingston.com/ en/memory-cards/storage-chart

28. Enfain. (2023). Flash Drive Capacity Chart. URL Access: https://enfain.com/faq/flash-drives-capacity -chart/

29. Toshiba Corporation. (2016). Flash Memory. URL Access: https://www.mouser.com/datasheet/2/1034/catalog_en_20160331_ALQ00211-313225 5.pdf

30. Carnegie, D. (1947). Little Known Facts About Well Known People. Kingswood Surrey: The World's Work (1913) LTD.

31. Gordon, B. (2013). Does Photographic Memory Exist?. URL Access: https://www.scientificamerican. com/ article/i-developed-what-appears-to-be-a-ph/

32. Calinger, R. S. (2016). Leonhard Euler: Mathematical Genius in the Enlightenment. New Jersey: Princeton University Press.

33. Conway, M. A. & Haque, S. (1999). Overshadowing the Reminiscence Bump: Memories of a Struggle for Independence. Journal of Adult Development, 6(1), 35–44.

34. Jansari, A. & Parkin, A. J. (1996). Things that Go Bump in Your Life: Explaining the Reminiscence Bump in Autobiographical Memory. Psychology and Aging, 11(1), 85.

35. Ballesteros, S., Nilsson, L. G., & Lemaire, P. (2009). Ageing, Cognition, and Neuroscience: An Introduction. European Journal of Cognitive Psychology, 21(2-3), 161–175.

36. Nyberg, L., Lövdén, M., Riklund, K., Lindenberger, U., & Bäckman, L. (2012). Memory Aging and Brain Maintenance. Trends in Cognitive Sciences, 16(5), 292–305.

37. Ebbinghaus, H. (2013). [Image] Memory: A Contribution to Experimental Psychology. Annals of Neurosciences, 20(4), 155.

38. Leibowitz, N., Baum, B., Enden, G., & Karniel, A. (2010). The Exponential Learning Equation as a Function of Successful Trials Results in Sigmoid Performance. Journal of Mathematical Psychology, 54(3), 338–340.

39. Syndeon Soft. (2023). The Learning Curve. URL Access: http://www.flashcardlearner.com/articles/the-learning-curve/

40. Spiegel, M. R. (1971). Schaum's Outline of Advanced Mathematics for Engineers and Scientists. New York: The McGraw-Hill Companies, Inc.

41. Boas, M. L. (2006). Mathematical Methods in the Physical Sciences Third Edition. Massa-chusetts: John Wiley & Sons, Inc.

42. Weisstein, E. W. (2002). The CRC Concise Encyclopedia of Mathematics. Florida: CRC Press Company.

43. The World of Science. (2021). How Are Memories Created & Stored? Brain Anatomy. URL Access: https://www.youtube.com/watch? v=UTO6O0DNkgw

44. ScienceABC II. (2023). How Does The Brain Store and Retrieve Memories?. URL Access: https://www. youtube.com/watch?v=B3HWrmwY4zY

45. Be Smart. (2021). How Your Brain Makes Its Own Electricity. URL Access: https://www.youtube.com/ watch?v=UZthGjcuTDs

46. Hamka. (1990). Tafsir Al-Azhar Volume 7. Singapore: National Library Pte Ltd.

47. Hamka. (2020). Philosophy of Life. Jakarta: Republika Publishers.

48. Lennox, J. (2023). Oxford Mathematician Destroys Atheism (15 Minute Brilliancy!). URL Access: https://www.youtube.com/watch?v=VrIvwPConv0

49. Schopenhauer, A. (1909). The World As Will And Idea. London: Kegan Paul, Trench, Trübner & Co.

50. Nahvi, M. & Edminister, J. (2004). Schaum's Outlines Teori dan Soal-soal Rangkaian Listrik Edisi Keempat. Jakarta: Penerbit Erlangga.

51. Wikipedia. (2023). Characterization (Materials Science). URL Access: https://en.wikipedia.org/wiki/Cha racterization_(materials_science)

52. Wikipedia. (2023). Dielectric Spectroscopy. URL Access: https://en.wikipedia.org/wiki/Dielectric_ spectroscopy

53. Wikipedia. (2023). Analytical Chemistry. URL Access: https://en.wikipedia.org/wiki/Analytical_ chemistry

54. The Physiological Society. (2015). The squid and its giant nerve fibre Part 1. URL Access: https://www.youtube.com/watch?v=I6jxrxcLxiI

55. Gage, G. & Marzullo, T. (2022). How Your Brain Works: Neuroscience Experiments for Every-One. Massachusetts: The MIT Press.

56. Sinauer Associates, Inc. (2018). The Voltage Clamp Method. URL Access: https://www.youtube.com/ watch?v=3F-Uw1RZqAQ

57. Purdue University. (2016). Introduction to Bioelectricity | PurdueX on edX | Course About Video. URL Access: https://www.youtube.com/ watch?v=gH819ka2EmU

58. Mayo Foundation for Medical Education and Research (MFMER). (2023). EEG (electro-encephalogram). URL Access: https://www.mayoclinic. Org

59. Griffiths, D. J. (2013). Introduction to Electrodynamics. Illinois: Pearson Education, Inc.

60. Zhang, H. & Jacobs, J. (2015). Traveling Theta Waves in the Human Hippocampus. Journal of Neuroscience, 35(36), 12477–12487.

61. Rudoler, J. H., Herweg, N. A., & Kahana, M. J. (2023). Hippocampal Theta and Episodic Memory. Journal of Neuroscience, 43(4), 613–620.

62. Wikipedia. (2023). Neuroimaging. URL Access: https://en.wi kipedia.org/wiki/Neuroimaging

63. Alt Shift X. (2015). Magnetoencephalography: Measuring Brain Activity with Magnetism. URL Access: https://www.youtube.com/watch?v=BLfwZ1NPNKY

64. Toufic, J. (2019). Radical Closure. Singapore: National Gallery Singapore.

65. Imperial College London. (2023). Neurotechnology. URL Access: https://www.imperial.ac.uk/study/ courses/postgraduate-taught/neurotechnology/

66. University of Otago. (2023). Study Neuroscience at Otago. URL Access: https://www.otago.ac.nz/ courses/subjects/neur

67. White, S. W., Richey, J. A., Gracanin, D., Bell, M. A., LaConte, S., Coffman, M., Trubanova, A., & Kim, I. (2015). The Promise of Neurotechnology in Clinical Translational Science. Clinical Psychological Science, 3(5), 797–815.

68. News Medical. (2022). Neurotechnology Shows Potential for Future Medical Interventions in Humans. URL Access: https://www.news-medical.net/ne ws/20221109/Neurotechnology-shows-potential-for-future-medical-interventions-in-humans.aspx

69. UNESCO. (2023). From Paralysis to Possi-bilities: Journey with Neurotechnology. URL Access: https://www.unesco.org/en/articles/paralysis-possibilities-journey-neurotechnology

70. UNESCO. (2023). Ethics of Neurotechnology. URL Access: https://www.unesco.org/en/ethics-neurotech #:~:text=Neurotechnology%20is%20a%20%20fast%2Dexpanding,technologies%20that%20interact%20with%20it

71. International Disability Alliance (IDA). (2023). Neurotechnology and the Rights of Persons with Disabilities. URL Access: https://www.ohchr.org/ sites/default/files/documents/hrbodies/ hrcouncil/advisorycommittee/neurotechnology/03-ngos/ac-submission-cso-interna tional-disability-alliance.docx

72. International Neuroethics Society (INS). (2023). Basics of Neuroethics. URL Access: https://www.neuro ethicssociety.org/what-is-neuroethics

73. Stanford Encyclopedia of Philosophy (SEP). (2021). Neuroethics. URL Access: https://plato.stanford.edu /entries/neuroethics/

74. Wikipedia. (2023). Neuroethics. URL Access: https://en.wikipedia.org/wiki/Neuroethics

75. Wikipedia. (2023). Developmental Bioelectricity. URL Access: https://en.wikipedia.org/wiki /Developmental_bioelectricity#cite_note-51

76. Magnis-Suseno, F. (1987). Etika Dasar, Masalah-masalah Pokok Filsafat Moral. Yogyakarta: Penerbit Kanisius.




DOI: http://dx.doi.org/10.31258/jkfi.22.2.157-168

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