Sam Kim

dblp:29/2294 · DBLP profile ↗
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17ranked-venue papers
8as first author
2since 2021 · last 2021
—ORCID · none

Domains — the database's venue-derived domains; a paper can count in several

Security and privacy · 15 · 8 first-author · 2 since 2021Artificial intelligence and machine learning · 1Graphics, computer vision, multimedia, augmented reality and games · 1Theory of computation · 1Applied, interdisciplinary, general and emerging computing · 1
YearPublicationVenuePosition
2021 Beyond Software Watermarking: Traitor-Tracing for Pseudorandom Functions
Rishab Goyal, Sam Kim, Brent Waters, David J. Wu 0001
ASIACRYPT (3)2
2021 Watermarking Cryptographic Functionalities from Standard Lattice Assumptions
Sam Kim, David J. Wu 0001
J. Cryptol.1
2020 Improving Speed and Security in Updatable Encryption Schemes
Dan Boneh, Saba Eskandarian, Sam Kim, Maurice Shih
ASIACRYPT (3)3
2020 Collusion Resistant Trace-and-Revoke for Arbitrary Identities from Standard Assumptions
Sam Kim, David J. Wu 0001
ASIACRYPT (2)1
2020 Key-Homomorphic Pseudorandom Functions from LWE with Small Modulus
Sam Kim
EUROCRYPT (2)1
2020 Multi-theorem Preprocessing NIZKs from Lattices
Sam Kim, David J. Wu 0001
J. Cryptol.1
2019 Watermarking Public-Key Cryptographic Primitives
Rishab Goyal, Sam Kim, Nathan Manohar, Brent Waters, David J. Wu 0001
CRYPTO (3)2
2019 Watermarking PRFs from Lattices: Stronger Security via Extractable PRFs
Sam Kim, David J. Wu 0001
CRYPTO (3)1
2018 Threshold Cryptosystems from Threshold Fully Homomorphic Encryption
Dan Boneh, Rosario Gennaro, Steven Goldfeder, Aayush Jain, Sam Kim, Peter M. R. Rasmussen, Amit Sahai
CRYPTO (1)5
2018 Multi-Theorem Preprocessing NIZKs from Lattices
Sam Kim, David J. Wu 0001
CRYPTO (2)1
2017 Lattice-Based DAPS and Generalizations: Self-enforcement in Signature Schemes
Dan Boneh, Sam Kim, Valeria Nikolaenko
ACNS2
2017 Access Control Encryption for General Policies from Standard Assumptions
Sam Kim, David J. Wu 0001
ASIACRYPT (1)1
2017 Watermarking Cryptographic Functionalities from Standard Lattice Assumptions
Sam Kim, David J. Wu 0001
CRYPTO (1)1
2017 Private Puncturable PRFs from Standard Lattice Assumptions
Dan Boneh, Sam Kim, Hart William Montgomery
EUROCRYPT (1)2
2017 Constrained Keys for Invertible Pseudorandom Functions
Dan Boneh, Sam Kim, David J. Wu 0001
TCC (1)2
2005 A new algorithm for detecting low-complexity regions in protein sequences
abstract
MOTIVATION: Pair-wise alignment of protein sequences and local similarity searches produce many false positives because of compositionally biased regions, also called low-complexity regions (LCRs), of amino acid residues. Masking and filtering such regions significantly improves the reliability of homology searches and, consequently, functional predictions. Most of the available algorithms are based on a statistical approach. We wished to investigate the structural properties of LCRs in biological sequences and develop an algorithm for filtering them. RESULTS: We present an algorithm for detecting and masking LCRs in protein sequences to improve the quality of database searches. We developed the algorithm based on the complexity analysis of subsequences delimited by a pair of identical, repeating subsequences. Given a protein sequence, the algorithm first computes the suffix tree of the sequence. It then collects repeating subsequences from the tree. Finally, the algorithm iteratively tests whether each subsequence delimited by a pair of repeating subsequences meets a given criteria. Test results with 1000 proteins from 20 families in Pfam show that the repeating subsequences are a good indicator for the low-complexity regions, and the algorithm based on such structural information strongly compete with others. AVAILABILITY: http://bioinfo.knu.ac.kr/research/CARD/ CONTACT: [email protected]
Sung W. Shin, Sam Kim
Bioinform.2
1988 Morphological Algorithms For Computing Non-planar Point Neighborhoods On Cellular Automata
Michael M. Skolnick, Sam Kim, Robert M. O'Bara
ICCV2