default search action
Hotaka Takizawa
Person information
Refine list
refinements active!
zoomed in on ?? of ?? records
view refined list in
export refined list as
2020 – today
- 2022
- [c39]Hotaka Takizawa, Ayano Fujinaka, Erika Gunji, Kojiro Mekata, Hiroyuki Kudo:
Preprocessing Optimization and Semantic Segmentation for Extraction of Cervical Intervertebral Disks from Videofluorography. ICPR 2022: 4948-4952 - [c38]Kiyohiko Nunokawa, Takeshi Tanabe, Hotaka Takizawa, Kouki Doi, Shuichi Ino:
Navigation for precise walking of blind people based on pulling illusion devices embedded in white canes. LifeTech 2022: 235-238 - 2021
- [c37]Hotaka Takizawa, Genki Sekita, Makoto Kobayashi, Akihisa Ohya, Mayumi Aoyagi:
Smartphone-Based Recognition Aid of Upward Staircases with People for the Visually Impaired. HCI (38) 2021: 561-566 - [c36]Hotaka Takizawa, Koji Kainou, Mayumi Aoyagi:
User Study on an Online-Training System of Activity in Daily Life for the Visually Impaired. ICIC (1) 2021: 757-762 - 2020
- [j15]Ayano Fujinaka, Kojiro Mekata, Hotaka Takizawa, Hiroyuki Kudo:
Segmentation of cervical intervertebral disks in videofluorography by CNN, multi-channelization and feature selection. Int. J. Comput. Assist. Radiol. Surg. 15(6): 901-908 (2020) - [j14]Ayano Fujinaka, Kojiro Mekata, Hotaka Takizawa, Hiroyuki Kudo:
Automated Segmentation of Cervical Intervertebral Disks from Videofluorography Using a Convolutional Neural Network and its Performance Evaluation. J. Signal Process. Syst. 92(3): 299-305 (2020) - [c35]Lili Ge, Hotaka Takizawa, Akihisa Ohya, Makoto Kobayashi, Mayumi Aoyagi:
Line drawing aid with Lensen Drawing Kit for the visually impaired. LifeTech 2020: 264-267 - [c34]Kazusa Sanada, Hotaka Takizawa, Mayumi Aoyagi, Akihisa Ohya, Makoto Kobayashi:
Recognition of White-Cane Users from Surveillance Camera Images Based on Detection of Line Segments. LifeTech 2020: 268-271
2010 – 2019
- 2019
- [c33]Hotaka Takizawa, Yusuke Kuramochi, Mayumi Aoyagi:
Kinect Cane System : Recognition Aid of Available Seats for the Visually Impaired. LifeTech 2019: 189-193 - 2017
- [j13]Hotaka Takizawa, Kazunori Orita, Mayumi Aoyagi, Nobuo Ezaki, Shinji Mizuno:
A Spot Reminder System for the Visually Impaired Based on a Smartphone Camera. Sensors 17(2): 291 (2017) - [j12]Daiki Nakamura, Hotaka Takizawa, Mayumi Aoyagi, Nobuo Ezaki, Shinji Mizuno:
Smartphone-Based Escalator Recognition for the Visually Impaired. Sensors 17(5): 1057 (2017) - 2015
- [j11]Takanobu Yanagihara, Hotaka Takizawa:
Pulmonary Nodule Detection from X-ray CT Images Based on Region Shape Analysis and Appearance-based Clustering. Algorithms 8(2): 209-223 (2015) - [j10]Hotaka Takizawa, Shotaro Yamaguchi, Mayumi Aoyagi, Nobuo Ezaki, Shinji Mizuno:
Kinect cane: an assistive system for the visually impaired based on the concept of object recognition aid. Pers. Ubiquitous Comput. 19(5-6): 955-965 (2015) - [c32]Hotaka Takizawa, Kazunori Orita, Mayumi Aoyagi, Nobuo Ezaki, Shinji Mizuno:
A Spot Navigation System for the Visually Impaired by Use of SIFT-Based Image Matching. HCI (10) 2015: 160-167 - [c31]Koji Kainou, Hotaka Takizawa, Mayumi Aoyagi, Nobuo Ezaki, Shinji Mizuno:
A Preliminary Study on Network-based ADL Training for the Visually Impaired by Use of a Parametric-speaker Robot. VINCI 2015: 9-12 - 2013
- [c30]Hotaka Takizawa, Shotaro Yamaguchi, Mayumi Aoyagi, Nobuo Ezaki, Shinji Mizuno:
Kinect cane: Object recognition aids for the visually impaired. HSI 2013: 473-478 - [c29]Hotaka Takizawa, Daichi Tanii:
Three-dimensional Block World Reconstruction from Monocular Images by Use of an Object-based Markov Random Field Model. MVA 2013: 281-285 - [c28]Kazunori Orita, Hotaka Takizawa, Mayumi Aoyagi, Nobuo Ezaki, Shinji Mizuno:
Obstacle detection by the Kinect cane system for the visually impaired. SII 2013: 115-118 - 2012
- [c27]Hotaka Takizawa, Shotaro Yamaguchi, Mayumi Aoyagi, Nobuo Ezaki, Shinji Mizuno:
Kinect cane: An assistive system for the visually impaired based on three-dimensional object recognition. SII 2012: 740-745 - 2011
- [c26]Hotaka Takizawa, Shigeyuki Ishii:
Lung Cancer Detection from Thoracic CT Scans Using 3-D Deformable Models Based on Statistical Anatomical Analysis. MIRAGE 2011: 28-39 - 2010
- [j9]Hotaka Takizawa, Shinji Yamamoto, Tsuyoshi Shiina:
Recognition of Pulmonary Nodules in Thoracic CT Scans Using 3-D Deformable Object Models of Different Classes. Algorithms 3(2): 125-144 (2010)
2000 – 2009
- 2009
- [c25]Hotaka Takizawa, Shinji Yamamoto, Tsuyoshi Shiina:
Recognition of Lung Cancers on CT Using 3-D Object Models of Different Classes. MVA 2009: 257-260 - 2007
- [j8]Hotaka Takizawa, Shinji Yamamoto, Tsuyoshi Shiina:
Accuracy Improvement of Pulmonary Nodule Detection Based on Spatial Statistical Analysis of Thoracic CT Scans. IEICE Trans. Inf. Syst. 90-D(8): 1168-1174 (2007) - [c24]Hotaka Takizawa:
3-D Shape Reconstruction from Stereovision Data Using Object-Consisted Markov Random Field Model. ICONIP (2) 2007: 618-627 - [c23]Shinji Mizuno, Keiichi Noda, Nobuo Ezaki, Hotaka Takizawa, Shinji Yamamoto:
Detection of Wilt by Analyzing Color and Stereo Vision Data of Plant. MIRAGE 2007: 400-411 - [c22]Hotaka Takizawa, Shinji Yamamoto, Tsuyoshi Shiina:
Accuracy Improvement of Lung Cancer Detection Based on Spatial Statistical Analysis of Thoracic CT Scans. MIRAGE 2007: 607-617 - 2006
- [j7]Hotaka Takizawa, Shinji Yamamoto:
Construction Method of Three-Dimensional Deformable Template Models for Tree-Shaped Organs. IEICE Trans. Inf. Syst. 89-D(1): 326-331 (2006) - [j6]Hotaka Takizawa, Shinji Yamamoto:
Surface Reconstruction from Stereo Data Using a Three-Dimensional Markov Random Field Model. IEICE Trans. Inf. Syst. 89-D(7): 2028-2035 (2006) - [c21]Hotaka Takizawa, Shinji Yamamoto:
Surface Reconstruction from Stereovision Data Using a 3-D MRF of Discrete Object Models. ICPR (1) 2006: 27-30 - 2005
- [j5]Gentaro Fukano, Yoshihiko Nakamura, Hotaka Takizawa, Shinji Mizuno, Shinji Yamamoto, Kunio Doi, Shigehiko Katsuragawa, Toru Matsumoto, Yukio Tateno, Takeshi Iinuma:
Eigen Image Recognition of Pulmonary Nodules from Thoracic CT Images by Use of Subspace Method. IEICE Trans. Inf. Syst. 88-D(6): 1273-1283 (2005) - [j4]Hotaka Takizawa, Nobuo Ezaki, Shinji Mizuno, Shinji Yamamoto:
Plant Recognition by Integrating Color and Range Data Obtained Through Stereo Vision. J. Adv. Comput. Intell. Intell. Informatics 9(6): 630-636 (2005) - [c20]Hotaka Takizawa, Shinji Yamamoto:
Surface Reconstruction from Stereo Data Using Three-Dimensional Markov Random Field Model. ICAPR (2) 2005: 434-443 - [c19]Minoru Harada, Shinji Mizuno, Hotaka Takizawa, Shinji Yamamoto, Toru Matsumoto, Shusuke Sone, Fumiyoshi Takayama, Masahiro Koyama, Shinichi Wada:
False positive reduction for ground glass opacities in CT by feature analysis based on a multiple-region extraction technique. SIP 2005: 116-121 - [c18]Hotaka Takizawa, Nobuo Ezaki, Shinji Mizuno, Shinji Yamamoto:
Measurement of plants by stereo vision for agricultural applications. SIP 2005: 359-364 - [c17]Hotaka Takizawa, Shinji Yamamoto:
Recognition of object surfaces from stereo data using a three-dimensional markov random field model. SIP 2005: 365-370 - 2004
- [j3]Hotaka Takizawa, Shinji Yamamoto, Tohru Nakagawa, Toru Matsumoto, Yukio Tateno, Takeshi Iinuma, Mitsuomi Matsumoto:
Recognition of lung nodule shadows from chest X-ray CT images using 3D Markov random field models. Syst. Comput. Jpn. 35(8): 82-95 (2004) - [c16]Yoshihiko Nakamura, Gentaro Fukano, Hotaka Takizawa, Shinji Mizuno, Shinji Yamamoto, Toru Matsumoto, Yukio Tateno, Takeshi Iinuma:
Pulmonary nodule detection from X-ray CT data by a subspace method. CARS 2004: 1355 - [c15]Yoshihiko Nakamura, Gentaro Fukano, Hotaka Takizawa, Shinji Mizuno, Shinji Yamamoto, Toru Matsumoto, Yukio Tateno, Takeshi Iinuma:
Eigen Nodule: View-Based Recognition of Lung Nodule in Chest X-ray CT Images Using Subspace Method. ICPR (4) 2004: 681-684 - [c14]Yoshihiko Nakamura, Gentaro Fukano, Hotaka Takizawa, Shinji Mizuno, Shinji Yamamoto, Tohru Matsumoto, Yukio Tateno, Takeshi Iinuma:
Eigen nodule: view-based recognition of lung nodule in chest x-ray CT images using subspace method. Medical Imaging: Image Processing 2004 - 2003
- [j2]Hotaka Takizawa, Kanae Shigemoto, Shinji Yamamoto, Toru Matsumoto, Yukio Tateno, Takeshi Iinuma, Mitsuomi Matsumoto:
A Recognition Method of Lung Nodule Shadows in X-Ray CT Images Using 3D Object Models. Int. J. Image Graph. 3(4): 533-546 (2003) - [c13]Gentaro Fukano, Yoshihiko Nakamura, Hotaka Takizawa, Shinji Yamamoto, Toru Matsumoto, Yukio Tateno, Takeshi Iinuma:
Lung nodules recognition in chest X-ray CT images using subspace method. CARS 2003: 1390 - [c12]Gentaro Fukano, Hotaka Takizawa, Kanae Shigemoto, Shinji Yamamoto, Tohru Matsumoto, Yukio Tateno, Takeshi Iinuma:
Recognition method of lung nodules using blood vessel extraction techniques and 3D object models. Medical Imaging: Image Processing 2003 - [c11]Mitsuhiro Tanino, Hotaka Takizawa, Shinji Yamamoto, Tohru Matsumoto, Yukio Tateno, Takeshi Iinuma:
A detection method of ground glass opacities in chest x-ray CT images using automatic clustering techniques. Medical Imaging: Image Processing 2003 - 2002
- [c10]Hotaka Takizawa, Shinji Yamamoto, Toru Matsumoto, Yukio Tateno, Takeshi Iinuma, Mitsuomi Matsumoto:
Recognition of Lung Nodules from X-ray CT Images Using 3D Markov Random Field Models. ICPR (1) 2002: 99-102 - [c9]Toshiharu Ezoe, Hotaka Takizawa, Shinji Yamamoto, Akinobu Shimizu, Tohru Matsumoto, Yukio Tateno, Takeshi Iimura, Mitsuomi Matsumoto:
Automatic detection method of lung cancers including ground-glass opacities from chest x-ray CT images. Medical Imaging: Image Processing 2002 - [c8]Hotaka Takizawa, Shinji Yamamoto, Tohru Matsumoto, Yukio Tateno, Takeshi Iinuma, Mitsuomi Matsumoto:
Recognition of lung nodules from x-ray CT images using 3D Markov random field models. Medical Imaging: Image Processing 2002 - 2001
- [c7]Hotaka Takizawa, Shinji Yamamoto, Toru Matsumoto, Yukio Tateno, Takeshi Iinuma, Mitsuomi Matsumoto:
Recognition of lung nodules from X-ray CT images using 3D MRF models. CARS 2001: 605-614 - [c6]Shinji Yamamoto, Hotaka Takizawa, Hao Jiang, Tohru Nakagawa, Toru Matsumoto, Yukio Tateno, Takeshi Iinuma, Mitsuomi Matsumoto:
A CAD system for lung cancer screening test by X-ray CT. CARS 2001: 646-652 - 2000
- [c5]Hotaka Takizawa, Gentaro Fukano, Shinji Yamamoto, Tohru Matsumoto, Yukio Tateno, Takeshi Iinuma, Mitsuomi Matsumoto:
Recognition of lung nodules from x-ray CT images considering 3D structure of objects and uncertainty of recognition. Medical Imaging: Image Processing 2000
1990 – 1999
- 1998
- [c4]Hotaka Takizawa, Yoshiaki Shirai, Jun Miura, Yoshinori Kuno:
Planning of observation and motion for interpretation of road intersection scenes considering uncertainty. IROS 1998: 520-525 - 1996
- [j1]Hotaka Takizawa, Yoshiaki Shirai, Jun Miura:
Selective refinement of 3-D scene description by attentive observation for mobile robot. Robotics Auton. Syst. 17(1-2): 15-23 (1996) - [c3]Hotaka Takizawa, Yoshiaki Shirai, Yoshinori Kuno, Jun Miura:
Recognition of intersection scene by attentive observation for a mobile robot. IROS 1996: 1648-1654 - 1994
- [c2]Hotaka Takizawa, Yoshiaki Shirai, Jun Miura:
Selective Refinement of 3-D Scence Description by Attentive Observation for Mobile Robot. IROS (Selected Papers) 1994: 29-38 - [c1]Hotaka Takizawa, Yoshiaki Shirai, Jun Miura:
Selective refinement of 3-D scene description by attentive observation for mobile robot. IROS 1994: 1118-1125
Coauthor Index
manage site settings
To protect your privacy, all features that rely on external API calls from your browser are turned off by default. You need to opt-in for them to become active. All settings here will be stored as cookies with your web browser. For more information see our F.A.Q.
Unpaywalled article links
Add open access links from to the list of external document links (if available).
Privacy notice: By enabling the option above, your browser will contact the API of unpaywall.org to load hyperlinks to open access articles. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the Unpaywall privacy policy.
Archived links via Wayback Machine
For web page which are no longer available, try to retrieve content from the of the Internet Archive (if available).
Privacy notice: By enabling the option above, your browser will contact the API of archive.org to check for archived content of web pages that are no longer available. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the Internet Archive privacy policy.
Reference lists
Add a list of references from , , and to record detail pages.
load references from crossref.org and opencitations.net
Privacy notice: By enabling the option above, your browser will contact the APIs of crossref.org, opencitations.net, and semanticscholar.org to load article reference information. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the Crossref privacy policy and the OpenCitations privacy policy, as well as the AI2 Privacy Policy covering Semantic Scholar.
Citation data
Add a list of citing articles from and to record detail pages.
load citations from opencitations.net
Privacy notice: By enabling the option above, your browser will contact the API of opencitations.net and semanticscholar.org to load citation information. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the OpenCitations privacy policy as well as the AI2 Privacy Policy covering Semantic Scholar.
OpenAlex data
Load additional information about publications from .
Privacy notice: By enabling the option above, your browser will contact the API of openalex.org to load additional information. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the information given by OpenAlex.
last updated on 2024-10-07 22:14 CEST by the dblp team
all metadata released as open data under CC0 1.0 license
see also: Terms of Use | Privacy Policy | Imprint