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Hardware-Supported ORAM in Effect: Practical Oblivious Search and Update on Very Large Dataset.

, , , and . IACR Cryptology ePrint Archive, (2018)

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Gait authentication on mobile phone using biometric cryptosystem and fuzzy commitment scheme., , and . Int. J. Inf. Sec., 14 (6): 549-560 (2015)Adaptive Cross-Device Gait Recognition Using a Mobile Accelerometer., , , , and . JIPS, 9 (2): 333 (2013)Hardware-Supported ORAM in Effect: Practical Oblivious Search and Update on Very Large Dataset., , , and . PoPETs, 2019 (1): 172-191 (2019)S3ORAM: A Computation-Efficient and Constant Client Bandwidth Blowup ORAM with Shamir Secret Sharing., , , , and . ACM Conference on Computer and Communications Security, page 491-505. ACM, (2017)Oblivious Dynamic Searchable Encryption on Distributed Cloud Systems., , , and . DBSec, volume 10980 of Lecture Notes in Computer Science, page 113-130. Springer, (2018)A Lightweight Gait Authentication on Mobile Phone Regardless of Installation Error., , , , and . SEC, volume 405 of IFIP Advances in Information and Communication Technology, page 83-101. Springer, (2013)Efficient Oblivious Data Structures for Database Services on the Cloud., , , and . IACR Cryptology ePrint Archive, (2017)Improving Gait Cryptosystem Security Using Gray Code Quantization and Linear Discriminant Analysis., , , and . ISC, volume 10599 of Lecture Notes in Computer Science, page 214-229. Springer, (2017)Practical and secure dynamic searchable encryption via oblivious access on distributed data structure., , and . ACSAC, page 302-313. ACM, (2016)A Multi-server ORAM Framework with Constant Client Bandwidth Blowup., , and . ACM Trans. Priv. Secur., 23 (1): 1:1-1:35 (2020)