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Securing data provenance in body area networks using lightweight wireless link fingerprints.

, , , and . TrustED@CCS, page 65-72. ACM, (2013)

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Zero reconciliation secret key generation for body-worn health monitoring devices., , and . WISEC, page 39-50. ACM, (2012)Authentication of lossy data in body-sensor networks for healthcare monitoring., , and . SECON, page 470-478. IEEE, (2012)A confidential and DoS-resistant multi-hop code dissemination protocol for wireless sensor networks., , , and . WISEC, page 245-252. ACM, (2009)Packet Pacing in Short Buffer Optical Packet Switched Networks., , , and . INFOCOM, IEEE, (2006)An experimental study of secret key generation for passive Wi-Fi wearable devices., , and . WoWMoM, page 1-9. IEEE, (2017)Fine with "1234"? An Analysis of SMS One-Time Password Randomness in Android Apps., , , , , , and . ICSE, page 1671-1682. IEEE, (2021)Finding Flaws from Password Authentication Code in Android Apps., , , , , , and . ESORICS (1), volume 11735 of Lecture Notes in Computer Science, page 619-637. Springer, (2019)Secret Key Generation Rate vs. Reconciliation Cost Using Wireless Channel Characteristics in Body Area Networks., , and . EUC, page 644-650. IEEE Computer Society, (2010)Analysis of an omni-directional narrowband ultrasonic receiver and CSS-based broadband transmission., , and . SenSys, page 361-362. ACM, (2009)Authentication of lossy data in body-sensor networks for cloud-based healthcare monitoring., , and . Future Gener. Comput. Syst., (2014)