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Takeshi Yoneyama
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2010 – 2019
- 2019
- [j11]Hiroki Yokota, Takeshi Yoneyama, Tetsuyou Watanabe, Yasuo Sasagawa, Mitsutoshi Nakada:
Method for the Detection of Tumor Blood Vessels in Neurosurgery Using a Gripping Force Feedback System. Sensors 19(23): 5157 (2019) - [c10]Masahiko Watanabe, Takeshi Yoneyama, Mitsutoshi Nakada, Tetsuyou Watanabe:
Development of disposable pressure sensible retractor system for preventing the overloading. SII 2019: 129-134 - 2018
- [j10]Hiroyuki Chinbe, Takeshi Yoneyama, Tetsuyou Watanabe, Katsuyoshi Miyashita, Mitsutoshi Nakada:
Finger-attachment device for the feedback of gripping and pulling force in a manipulating system for brain tumor resection. Int. J. Comput. Assist. Radiol. Surg. 13(1): 3-12 (2018) - 2017
- [j9]Tetsuyou Watanabe, Toshio Koyama, Takeshi Yoneyama, Mitsutoshi Nakada:
A Force-Visualized Silicone Retractor Attachable to Surgical Suction Pipes. Sensors 17(4): 773 (2017) - 2016
- [j8]Takeshi Yoneyama, Daichi Tatsuno, Kiichiro Kawamoto, Masayuki Okamoto:
Effect of Press Slide Speed and Stroke on Cup Forming Using a Plain-Woven Carbon Fiber Thermoplastic Composite Sheet. Int. J. Autom. Technol. 10(3): 381-391 (2016) - [j7]Tetsuyou Watanabe, Toshio Koyama, Takeshi Yoneyama, Mitsutoshi Nakada:
Force-Sensing Silicone Retractor for Attachment to Surgical Suction Pipes. Sensors 16(7): 1133 (2016) - [c9]Toshio Koyama, Takeshi Yoneyama, Mitsutoshi Nakada, Tetsuyou Watanabe:
Incompressible liquid based force sensible silicone retractor attachable to surgical suction instruments. AIM 2016: 1398-1404 - [c8]Hiroyuki Chinbe, Takeshi Yoneyama, Tetsuyou Watanabe, Mitsutoshi Nakada:
Haptic threshold for pulling force feedback on surgeon's fingertip in medical robotic systems. IECON 2016: 767-772 - 2015
- [j6]Kiichiro Kawamoto, Takeshi Yoneyama, Masato Okada:
Back-Pressure Forging Using a Servo Die Cushion. Int. J. Autom. Technol. 9(2): 184-192 (2015) - [c7]Toshio Koyama, Takanobu Iwai, Takeshi Yoneyama, Hiroyuki Kagawa, Yutaka Hayashi, Mitsutoshi Nakada, Tetsuyou Watanabe:
Silicone retractor with embedded force-sensing function for attachment to surgical suction pipes. AIM 2015: 145-150 - [c6]Takanobu Iwai, Toshio Koyama, Hiroyuki Kagawa, Takeshi Yoneyama, Tetsuyou Watanabe:
Visualization method based stiffness sensing system for endoscopes. EMBC 2015: 6449-6452 - 2014
- [j5]Yoshinori Fujihira, Takuya Hanyu, Yusuke Kanada, Takeshi Yoneyama, Tetsuyou Watanabe, Hiroyuki Kagawa:
Gripping Force Feedback System for Neurosurgery. Int. J. Autom. Technol. 8(1): 83-94 (2014) - [j4]Tetsuyou Watanabe, Takanobu Iwai, Yoshinori Fujihira, Lina Wakako, Hiroyuki Kagawa, Takeshi Yoneyama:
Force Sensor Attachable to Thin Fiberscopes/Endoscopes Utilizing High Elasticity Fabric. Sensors 14(3): 5207-5220 (2014) - [c5]Takanobu Iwai, Yoshinori Fujihira, Lina Wakako, Hiroyuki Kagawa, Takeshi Yoneyama, Tetsuyou Watanabe:
Three-axis force visualizing system for fiberscopes utilizing highly elastic fabric. AIM 2014: 1110-1115 - 2013
- [j3]Takeshi Yoneyama, Tetsuyou Watanabe, Hiroyuki Kagawa, Junichiro Hamada, Yutaka Hayashi, Mitsutoshi Nakada:
Force-detecting gripper and force feedback system for neurosurgery applications. Int. J. Comput. Assist. Radiol. Surg. 8(5): 819-829 (2013) - [c4]Tetsuyou Watanabe, Takeshi Yoneyama, Yasumitsu Toribatake, Hiroyuki Hayashi:
Main disease classification of intermittent claudication via L1-regularized SVM. EMBC 2013: 6409-6412 - 2012
- [j2]Takeshi Yoneyama, Satoshi Abe, Michiru Miyamaru:
Reducing Weld Line by Heating Mold Surface with Heater Embedded by Laser Metal Sintering. Int. J. Autom. Technol. 6(5): 591-596 (2012) - [c3]Tetsuyou Watanabe, Takeshi Yoneyama, Yasumitsu Toribatake, Hiroyuki Hayashi, Noriaki Yokogawa:
Study on differentiation factors for main disease identification of intermittent claudication. EMBC 2012: 4696-4699 - 2011
- [c2]Takeshi Yoneyama, Tetsuyou Watanabe, Hiroyuki Kagawa, Junichiro Hamada, Yutaka Hayashi, Mitsutoshi Nakada:
Force detecting gripper and flexible micro manipulator for neurosurgery. EMBC 2011: 6695-6699
2000 – 2009
- 2008
- [j1]Takeshi Yoneyama, Hiroyuki Kagawa:
Fabrication of Cooling Channels in the Injection Molding by Laser Metal Sintering. Int. J. Autom. Technol. 2(3): 162-167 (2008) - 2002
- [c1]Yoshio Yamamoto, Takeshi Yoneyama, Tadashi Hashimoto, Takahiro Okubo, Toyotsugu Itoh:
Sensor-based analysis of high-precision insertion tasks. IROS 2002: 1892-1897
Coauthor Index
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