2008 |
15 | EE | Atsushi Nishikawa,
Hiroaki Nakagoe,
Kazuhiro Taniguchi,
Yasuo Yamada,
Mitsugu Sekimoto,
Shuji Takiguchi,
Morito Monden,
Fumio Miyazaki:
How Does the Camera Assistant Decide the Zooming Ratio of Laparoscopic Images? Analysis and Implementation.
MICCAI (2) 2008: 611-618 |
2007 |
14 | EE | Hodaka Numasaki,
Hajime Harauchi,
Yuko Ohno,
Kiyonari Inamura,
Satoko Kasahara,
Morito Monden,
Masato Sakon:
New classification of medical staff clinical services for optimal reconstruction of job workflow in a surgical ward: Application of spectrum analysis and sequence relational analysis.
Computational Statistics & Data Analysis 51(12): 5708-5717 (2007) |
2005 |
13 | EE | Kikuya Kato,
Riu Yamashita,
Ryo Matoba,
Morito Monden,
Shinzaburo Noguchi,
Toshihisa Takagi,
Kenta Nakai:
Cancer gene expression database (CGED): a database for gene expression profiling with accompanying clinical information of human cancer tissues.
Nucleic Acids Research 33(Database-Issue): 533-536 (2005) |
2004 |
12 | | Atsushi Nishikawa,
Ryo Fujita,
Satoshi Yamaguchi,
Takahiro Yohda,
Takahiro Nakayama,
Fumio Miyazaki,
Mitsugu Sekimoto,
Masayoshi Yasui,
Shuji Takiguchi,
Morito Monden:
New human-machine interface design of a robotic laparoscope positioner using a face-mounted display.
CARS 2004: 1315 |
11 | EE | Jun Sese,
Yukinori Kurokawa,
Morito Monden,
Kikuya Kato,
Shinichi Morishita:
Constrained clusters of gene expression profiles with pathological features.
Bioinformatics 20(17): 3137-3145 (2004) |
2003 |
10 | | Atsushi Nishikawa,
Shuichi Asano,
Ryo Fujita,
Takahiro Yohda,
Fumio Miyazaki,
Mitsugu Sekimoto,
Masayoshi Yasui,
Shuji Takiguchi,
Morito Monden:
Robust visual tracking of multiple surgical instruments for laparoscopic surgery.
CARS 2003: 1372 |
9 | EE | Atsushi Nishikawa,
Shuichi Asano,
Ryo Fujita,
Satoshi Yamaguchi,
Takahiro Yohda,
Fumio Miyazaki,
Mitsugu Sekimoto,
Masayoshi Yasui,
Yasuhiro Miyake,
Shuji Takiguchi,
Morito Monden:
Selective Use of Face Gesture Interface and Instrument Tracking System for Control of a Robotic Laparoscope Positioner.
MICCAI (2) 2003: 973-974 |
8 | EE | Atsushi Nishikawa,
Daiji Negoro,
Haruhiko Kakutani,
Fumio Miyazaki,
Mitsugu Sekimoto,
Masayoshi Yasui,
Shuji Takiguchi,
Morito Monden:
Design of an endoscopic solo surgery simulator for quantitative evaluation of the human-machine interface in robotic camera positioning systems.
Advanced Robotics 17(6): 503-521 (2003) |
7 | | Shigeyuki Oba,
Masa-aki Sato,
Ichiro Takemasa,
Morito Monden,
Ken-ichi Matsubara,
Shin Ishii:
A Bayesian missing value estimation method for gene expression profile data.
Bioinformatics 19(16): 2088-2096 (2003) |
2002 |
6 | EE | Shigeyuki Oba,
Masa-aki Sato,
Ichiro Takemasa,
Morito Monden,
Ken-ichi Matsubara,
Shin Ishii:
Missing Value Estimation Using Mixture of PCAs.
ICANN 2002: 492-497 |
5 | EE | Atsushi Nishikawa,
Daiji Negoro,
Haruhiko Kakutani,
Fumio Miyazaki,
Mitsugu Sekimoto,
Masayoshi Yasui,
Shuji Takiguchi,
Morito Monden:
Using an Endoscopic Solo Surgery Simulator for Quantitative Evaluation of Human-Machine Interface in Robotic Camera Positioning Systems.
MICCAI (1) 2002: 1-8 |
2001 |
4 | | Atsushi Nishikawa,
Toshinori Hosoi,
Kengo Koara,
Ayae Hikita,
Daiji Negoro,
Shuichi Asano,
Fumio Miyazaki,
Mitsugu Sekimoto,
Yasuhiro Miyake,
Masayoshi Yasui,
Morito Monden:
A laparoscope positioning system with the surgeon's face image-based human-machine interface.
CARS 2001: 166-173 |
3 | EE | Atsushi Nishikawa,
Toshinori Hosoi,
Kengo Koara,
Daiji Negoro,
Ayae Hikita,
Shuichi Asano,
Fumio Miyazaki,
Mitsugu Sekimoto,
Yasuhiro Miyake,
Masayoshi Yasui,
Morito Monden:
Real-Time Visual Tracking of the Surgeon's Face for Laparoscopic Surgery.
MICCAI 2001: 9-16 |
2000 |
2 | | Masahiko Nakamoto,
Yoshinobu Sato,
Yasuhiro Tamaki,
Hiroaki Nagano,
Masaki Miyamoto,
Toshihiko Sasama,
Morito Monden,
Shinichi Tamura:
Magneto-Optic Hybrid 3-D Sensor for Surgical Navigation.
MICCAI 2000: 839-848 |
1998 |
1 | | Yoshinobu Sato,
Masahiko Nakamoto,
Toshihiko Sasama,
Yasuhiro Tamaki,
I. Sakita,
Yoshikazu Nakajima,
Shinichi Tamura,
Morito Monden:
Image guidance of breast cancer surgery using 3D ultrasonic images and augmented reality visualization.
IEEE Trans. Med. Imaging 17(5): 681-693 (1998) |