Next-Gen Bio-Implant Ecosystem for Secure Living: Real-Time Medical Access and Criminal Monitoring

  • Arun S Capstone Project by Cohort 6 of the National Cyber Security Scholar Program

Abstract

Bio-implant technology is revolutionising the fields of security, healthcare, and automation. This research investigates the dual-frequency NExT RFID + NFC Chip—which combines a 13.56 MHz NTAG216 (ISO14443A) and a 125 kHz T5577 (EM41xx/HID compatible) component—for advanced multi-factor authentication (MFA), IoT integration, criminal tracking, and emergency medical data access. By conducting extensive experimental evaluations and testing, this study assesses the technical feasibility, performance, and security implications of bio-implant technology. Detailed comparative analyses, real-world use case evaluations, and forward-looking discussions on regulatory and ethical issues are presented.

References

1. Ip R, Michael K, Michael MG. Amal Graafstra the do-ityourselfer RFID implantee: The culture values and ethics
of hobbyist implantees: A case study. University of Wollongong, Research Online. Disponível em:< http://ro. uow. edu. au/cgi/viewcontent. cgi. 2008 Jun 24.
2. Achille R, Perakslis C, Michael K. Ethical issues to consider for microchip implants in humans. Ethics in
Biology, Engineering and Medicine: An International Journal. 2012;3(1-3).
3. NXP Semiconductors. NTAG216 – NFC Forum Type 2 Tag compliant IC with 888 bytes user memory [Internet].
2022 [cited 2024 May 20]. Available from: https://datasheet4u.com/datasheet-pdf/NXP/NTAG216/pdf. php?id=1443590
Published
2025-08-19
How to Cite
S, Arun. Next-Gen Bio-Implant Ecosystem for Secure Living: Real-Time Medical Access and Criminal Monitoring. Journal of Advanced Research in Electronics Engineering and Technology, [S.l.], v. 12, n. 1&2, p. 160-166, aug. 2025. ISSN 2456-1428. Available at: <http://thejournalshouse.com/index.php/electronics-engg-technology-adr/article/view/1631>. Date accessed: 28 aug. 2025.