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Original Article
A Secure and Scalable Blockchain-Integrated Framework for Medico-Legal Record Management
Dr. K. Karuppusamy1
R. Sinduja2
A. Sathishkumar3
1 Professor & Head, Department of Computer Science and Engineering, RVS College of Engineering & Technology, Coimbatore, Tamilnadu, India. 2 Department of Computer Science and Engineering, RVS College of Engineering & Technology, Coimbatore, Tamilnadu, India. 3 PG Student, Department of Computer Science and Engineering, RVS College of Engineering & Technology, Coimbatore, Tamilnadu, India.
Published Online: March-April 2026
Pages: 112-117
Cite this article
↗ https://www.doi.org/10.59256/ijsreat.20260602016References
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and blockchain technology", Sensors, vol. 21, no. 22, pp. 7765-7765, 2021.
5. K. Xue, N. Gai, J. Hong, D. S. L. Wei, P. Hong and N. Yu, "Efficient and secure attribute-based access control with identical sub-policies
frequently used in cloud storage", IEEE Trans. Dependable Secure Comput., vol. 19, no. 1, pp. 635-646, Jan./Feb. 2022.
6. T. Dillon, C. Wu, and E. Chang, “Cloud computing: Issues and challenges,” in Proc. 24th IEEE Int. Conf. Adv. Inf. Netw. Appl., Apr.
2010, pp. 27–33.
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Berkeley, CA, USA, 2000, pp. 44–55.
8. J. Benet. “IPFS-content addressed, versioned, P2P file system.” 2014. [Online]. Available: https://arxiv.org/abs/1407.3561
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10. A. Kosba, A. Miller, E. Shi, Z. Wen, and C. Papamanthou, “Hawk: The blockchain model of cryptography and privacy-preserving smart
contracts,” in Proc. IEEE Symp. Security Privacy (S&P). San Jose, CA, USA, 2016, pp. 839–858.
11. P. C. Tang, J. S. Ash, D. W. Bates, J. M. Overhage, and D. Z. Sands, “Personal health records: Definitions, benefits, and strategies for
overcoming barriers to adoption,” J. Amer. Med. Inform. Assoc., vol. 13, no. 2, pp. 121–126, Mar. 2006.
12. B. Tellenbach, “Identity-based cryptography,” in Trends in Data Protection and Encryption Technologies. Cham, Switzerland : Springer,
2023, pp. 59-64
2. S. Chen, J. Li, Y. Zhang and J. Han, "Efficient revocable attribute-based encryption with verifiable data integrity", IEEE Internet Things
J., Oct. 2023.
3. S. Xu et al., "Efficient ciphertext-policy attribute-based encryption with blackbox traceability", Inf. Sci., vol. 538, pp. 19-38, Oct. 2020.
4. W. Chen, S. Zhu, J. Li, J. Wu, C. L. Chen and Y. Y. Deng, "Authorized shared electronic medical record system with proxy re-encryption
and blockchain technology", Sensors, vol. 21, no. 22, pp. 7765-7765, 2021.
5. K. Xue, N. Gai, J. Hong, D. S. L. Wei, P. Hong and N. Yu, "Efficient and secure attribute-based access control with identical sub-policies
frequently used in cloud storage", IEEE Trans. Dependable Secure Comput., vol. 19, no. 1, pp. 635-646, Jan./Feb. 2022.
6. T. Dillon, C. Wu, and E. Chang, “Cloud computing: Issues and challenges,” in Proc. 24th IEEE Int. Conf. Adv. Inf. Netw. Appl., Apr.
2010, pp. 27–33.
7. D. X. Song, D. Wagner, and A. Perrig, “Practical techniques for searches on encrypted data,” in Proc. IEEE Symp.Security Privacy (S&P),
Berkeley, CA, USA, 2000, pp. 44–55.
8. J. Benet. “IPFS-content addressed, versioned, P2P file system.” 2014. [Online]. Available: https://arxiv.org/abs/1407.3561
9. J. Katz and Y. Lindell, Introduction to Modern Cryptography. Boca Raton, FL, USA : CRC Press, 2020.
10. A. Kosba, A. Miller, E. Shi, Z. Wen, and C. Papamanthou, “Hawk: The blockchain model of cryptography and privacy-preserving smart
contracts,” in Proc. IEEE Symp. Security Privacy (S&P). San Jose, CA, USA, 2016, pp. 839–858.
11. P. C. Tang, J. S. Ash, D. W. Bates, J. M. Overhage, and D. Z. Sands, “Personal health records: Definitions, benefits, and strategies for
overcoming barriers to adoption,” J. Amer. Med. Inform. Assoc., vol. 13, no. 2, pp. 121–126, Mar. 2006.
12. B. Tellenbach, “Identity-based cryptography,” in Trends in Data Protection and Encryption Technologies. Cham, Switzerland : Springer,
2023, pp. 59-64
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