@inproceedings{ACS91, author = {D. Augot and P. Charpin and N. Sendrier}, title = {The Minimum Distance of Some Binary Codes via the {Newton's} Identities}, booktitle = {EUROCODE '90}, year = 1991, editor = {P. Charpin and G. Cohen}, pages = {65-73}, publisher = {Springer}, volume = 514, series = {LNCS} }
@inproceedings{AFS05c, author = {D. Augot and M. Finiasz and N. Sendrier}, title = {A Family of Fast Syndrome Based Cryptographic Hash Function}, booktitle = {Progress in Cryptology - Mycrypt 2005}, pages = {64-83}, year = 2005, editor = {E. Dawson and S. Vaudenay}, volume = 3715, series = {LNCS}, publisher = {Springer} }
@inproceedings{BS08, author = {B. Biswas and N. Sendrier}, title = {{McEliece} Cryptosystem Implementation: Theory and Practice}, booktitle = {PQCrypto}, year = 2008, editor = {J. Buchmann and J. Ding}, volume = 5299, series = {LNCS}, publisher = {Springer}, pages = {47-62} }
@inproceedings{CCCS92, author = {P. Camion and C. Carlet and P. Charpin and N. Sendrier}, title = {On correlation-immune functions}, booktitle = {Advances in Cryptology - CRYPTO '91}, year = 1992, editor = {J. Feigenbaum}, volume = 576, series = {LNCS}, pages = {86-100} }
@inproceedings{CS98, author = {A. Canteaut and N. Sendrier}, title = {Cryptanalysis of the original {McEliece} cryptosystem}, booktitle = {Advances in Cryptology - ASIACRYPT '98}, pages = {187-199}, year = 1998, volume = 1514, series = {LNCS}, publisher = {Springer} }
@inproceedings{CS09, author = {M. {C\^ote} and N. Sendrier}, title = {Reconstruction of Convolutional Codes from Noisy Observation}, booktitle = {IEEE Conference, ISIT 2009}, pages = {546-550}, year = 2009, address = {Seoul, Korea} }
@inproceedings{CS10, author = {M. {C\^ote} and N. Sendrier}, title = {Reconstruction of a Turbo-Code Interleaver from Noisy Observation}, booktitle = {IEEE Conference, ISIT 2010}, pages = {2003-2007}, year = 2010, address = {Austin, Texas, USA} }
@inproceedings{CFS01b, author = {N. Courtois and M. Finiasz and N. Sendrier}, title = {How to achieve a {McEliece}-based Digital Signature Scheme}, booktitle = {Advances in Cryptology - ASIACRYPT 2001}, pages = {157-174}, year = 2001, editor = {C. Boyd}, volume = 2248, series = {LNCS}, publisher = {Springer} }
@inproceedings{FS09, author = {M. Finiasz and N. Sendrier}, title = {Security Bounds for the Design of Code-based Cryptosystems}, booktitle = {Advances in Cryptology - ASIACRYPT 2009}, pages = {88-105}, year = 2009, editor = {Mitsuru Matsui}, volume = 5912, series = {LNCS}, publisher = {Springer} }
@inproceedings{GLS07, author = {P. Gaborit and C. Laudaroux and N. Sendrier}, title = {SYND: a Very Fast Code-Based Stream Cipher with a Security Reduction}, booktitle = {IEEE Conference, ISIT 2007}, pages = {186-190}, year = 2007, address = {Nice, France}, month = jul, publisher = {IEEE} }
@inproceedings{Sen93b, author = {N. Sendrier}, title = {The Polynomial of Correctable Patterns}, booktitle = {EUROCODE '92}, year = 1993, editor = {P. Camion and P. Charpin and S. Harari}, number = 339, series = {CISM Courses and Lectures}, pages = {291-303}, publisher = {Springer} }
@inproceedings{Sen94c, author = {N. Sendrier}, title = {Product codes and the {Singleton} bound}, booktitle = {Proceedings of the French-Israeli Workshop}, year = 1994, volume = 781, series = {LNCS}, pages = {304-315}, publisher = {Springer} }
@inproceedings{Sen95, author = {N. Sendrier}, title = {Efficient generation of binary words of given weight}, booktitle = {Cryptography and Coding ; proceedings of the 5th IMA conference}, year = 1995, editor = {Colin Boyd}, volume = 1025, series = {LNCS}, pages = {184-187}, publisher = {Springer} }
@inproceedings{Sen05, author = {N. Sendrier}, title = {Encoding information into constant weight words}, booktitle = {IEEE Conference, ISIT 2005}, pages = {435-438}, year = 2005, address = {Adelaide, Australia}, month = sep }
@inproceedings{Sen11c, author = {N. Sendrier}, title = {Decoding One out of Many}, booktitle = {PQCrypto 2011}, pages = {51-67}, year = 2011, editor = {B.-Y.~Yang}, volume = 7071, series = {LNCS}, publisher = {Springer} }
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