2009 | ||
---|---|---|
38 | EE | Tomohiro I, Shunsuke Inenaga, Hideo Bannai, Masayuki Takeda: Counting Parameterized Border Arrays for a Binary Alphabet. LATA 2009: 422-433 |
37 | EE | Wataru Matsubara, Kazuhiko Kusano, Hideo Bannai, Ayumi Shinohara: A Series of Run-Rich Strings. LATA 2009: 578-587 |
2008 | ||
36 | EE | Kazuyuki Narisawa, Hideo Bannai, Kohei Hatano, Shunsuke Inenaga, Masayuki Takeda: String Kernels Based on Variable-Length-Don't-Care Patterns. Discovery Science 2008: 308-318 |
35 | EE | Kazuhiko Kusano, Wataru Matsubara, Akira Ishino, Hideo Bannai, Ayumi Shinohara: New Lower Bounds for the Maximum Number of Runs in a String CoRR abs/0804.1214: (2008) |
34 | EE | Eiichi Bannai, Etsuko Bannai, Hideo Bannai: Uniqueness of certain association schemes. Eur. J. Comb. 29(6): 1379-1395 (2008) |
33 | EE | Yasuto Higa, Hideo Bannai, Shunsuke Inenaga, Masayuki Takeda: Reachability on Suffix Tree Graphs. Int. J. Found. Comput. Sci. 19(1): 147-162 (2008) |
2007 | ||
32 | EE | Kazuyuki Narisawa, Shunsuke Inenaga, Hideo Bannai, Masayuki Takeda: Efficient Computation of Substring Equivalence Classes with Suffix Arrays. CPM 2007: 340-351 |
31 | EE | Ryosuke Nakamura, Hideo Bannai, Shunsuke Inenaga, Masayuki Takeda: Simple Linear-Time Off-Line Text Compression by Longest-First Substitution. DCC 2007: 123-132 |
30 | EE | Kazuyuki Narisawa, Hideo Bannai, Kohei Hatano, Masayuki Takeda: Unsupervised Spam Detection Based on String Alienness Measures. Discovery Science 2007: 161-172 |
29 | EE | Hideo Bannai: Algorithms for String Pattern Discovery. MDAI 2007: 24-29 |
28 | EE | Tatsuya Akutsu, Hideo Bannai, Satoru Miyano, Sascha Ott: On the complexity of deriving position specific score matrices from positive and negative sequences. Discrete Applied Mathematics 155(6-7): 676-685 (2007) |
2006 | ||
27 | EE | Yasuto Higa, Shunsuke Inenaga, Hideo Bannai, Masayuki Takeda: A New Family of String Classifiers Based on Local Relatedness. Discovery Science 2006: 114-124 |
26 | EE | Yasuto Higa, Hideo Bannai, Shunsuke Inenaga, Masayuki Takeda: Reachability on suffix tree graphs. Stringology 2006: 212-225 |
2005 | ||
25 | EE | Hideo Bannai, Kohei Hatano, Shunsuke Inenaga, Masayuki Takeda: Practical Algorithms for Pattern Based Linear Regression. Discovery Science 2005: 44-56 |
24 | EE | Osamu Hirose, Naoki Nariai, Yoshinori Tamada, Hideo Bannai, Seiya Imoto, Satoru Miyano: Estimating Gene Networks from Expression Data and Binding Location Data via Boolean Networks. ICCSA (3) 2005: 349-356 |
23 | EE | Yoshinori Tamada, Hideo Bannai, Seiya Imoto, Toshiaki Katayama, Minoru Kanehisa, Satoru Miyano: Utilizing Evolutionary Information and Gene Expression Data for Estimating Gene Networks with Bayesian Network Models. J. Bioinformatics and Computational Biology 3(6): 1295-1314 (2005) |
2004 | ||
22 | EE | Shunsuke Inenaga, Hideo Bannai, Heikki Hyyrö, Ayumi Shinohara, Masayuki Takeda, Kenta Nakai, Satoru Miyano: Finding Optimal Pairs of Cooperative and Competing Patterns with Bounded Distance. Discovery Science 2004: 32-46 |
21 | EE | Hideo Bannai, Heikki Hyyrö, Ayumi Shinohara, Masayuki Takeda, Kenta Nakai, Satoru Miyano: Finding Optimal Pairs of Patterns. WABI 2004: 450-462 |
20 | EE | Hideo Bannai, Heikki Hyyrö, Ayumi Shinohara, Masayuki Takeda, Kenta Nakai, Satoru Miyano: An O(N2) Algorithm for Discovering Optimal Boolean Pattern Pairs. IEEE/ACM Trans. Comput. Biology Bioinform. 1(4): 159-170 (2004) |
19 | EE | Hideo Bannai, Shunsuke Inenaga, Ayumi Shinohara, Masayuki Takeda, Satoru Miyano: Efficiently Finding Regulatory Elements Using Correlation with Gene Expression. J. Bioinformatics and Computational Biology 2(2): 273-288 (2004) |
2003 | ||
18 | EE | Masayuki Takeda, Shunsuke Inenaga, Hideo Bannai, Ayumi Shinohara, Setsuo Arikawa: Discovering Most Classificatory Patterns for Very Expressive Pattern Classes. Discovery Science 2003: 486-493 |
17 | Yoshinori Tamada, SunYong Kim, Hideo Bannai, Seiya Imoto, Kousuke Tashiro, Satoru Kuhara, Satoru Miyano: Estimating gene networks from gene expression data by combining Bayesian network model with promoter element detection. ECCB 2003: 227-236 | |
16 | EE | Hideo Bannai, Shunsuke Inenaga, Ayumi Shinohara, Masayuki Takeda: Inferring Strings from Graphs and Arrays. MFCS 2003: 208-217 |
15 | EE | Sascha Ott, Yoshinori Tamada, Hideo Bannai, Kenta Nakai, Satoru Miyano: Intrasplicing - Analysis of Long Intron Sequences. Pacific Symposium on Biocomputing 2003: 339-350 |
14 | EE | Eijiro Sumii, Hideo Bannai: The Extension of ML with Hypothetical Views for Discovery Science: Formalization and Implementation. Journal of Functional and Logic Programming 2003: (2003) |
2002 | ||
13 | EE | Tatsuya Akutsu, Hideo Bannai, Satoru Miyano, Sascha Ott: On the Complexity of Deriving Position Specific Score Matrices from Examples. CPM 2002: 168-177 |
12 | EE | Shunsuke Inenaga, Hideo Bannai, Ayumi Shinohara, Masayuki Takeda, Setsuo Arikawa: Discovering Best Variable-Length-Don't-Care Patterns. Discovery Science 2002: 86-97 |
11 | EE | Eijiro Sumii, Hideo Bannai: VM lambda: A Functional Calculusfor Scientific Discovery. FLOPS 2002: 290-304 |
10 | Osamu Maruyama, Satoru Kuhara, Hideo Bannai, Satoru Miyano, Yoshinori Tamada: Fast Algorithm for Extracting Multiple Unordered Short Motifs Using Bit Operations. JCIS 2002: 1180-1185 | |
9 | EE | Shunsuke Inenaga, Ayumi Shinohara, Masayuki Takeda, Hideo Bannai, Setsuo Arikawa: Space-Economical Construction of Index Structures for All Suffixes of a String. MFCS 2002: 341-352 |
8 | EE | Yoshinori Tamada, Hideo Bannai, Osamu Maruyama, Satoru Miyano: Foundations of Designing Computational Knowledge Discovery Processes. Progress in Discovery Science 2002: 459-470 |
7 | Hideo Bannai, Yoshinori Tamada, Osamu Maruyama, Kenta Nakai, Satoru Miyano: Extensive feature detection of N-terminal protein sorting signals. Bioinformatics 18(2): 298-305 (2002) | |
6 | EE | Osamu Maruyama, Hideo Bannai, Yoshinori Tamada, Satoru Kuhara, Satoru Miyano: Fast algorithm for extracting multiple unordered short motifs using bit operations. Inf. Sci. 146(1-4): 115-126 (2002) |
2001 | ||
5 | Eijiro Sumii, Hideo Bannai: VM lambda: a Functional Calculus for Scientific Discovery. APLAS 2001: 265-275 | |
4 | EE | Hideo Bannai, Yoshinori Tamada, Osamu Maruyama, Satoru Miyano: VML: A View Modeling Language for Computational Knowledge Discovery. Discovery Science 2001: 30-44 |
3 | Hideo Bannai, Yoshinori Tamada, Osamu Maruyama, Kenta Nakai, Satoru Miyano: Views: Fundamental Building Blocks in the Process of Knowledge Discovery. FLAIRS Conference 2001: 233-238 | |
2 | EE | Hideo Bannai, Yoshinori Tamada, Osamu Maruyama, Satoru Miyano: HypothesisCreator: Concepts for Accelerating the Computational Knowledge Discovery Process. Electron. Trans. Artif. Intell. 5(B): 73-83 (2001) |
1999 | ||
1 | EE | Hideo Bannai, Satoru Miyano: A Definition of Discovery in Terms of Generalized Descriptional Complexity. Discovery Science 1999: 316-318 |