Satoshi Ieiri

dblp:64/360 · DBLP profile ↗
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5ranked-venue papers
0as first author
0since 2021 · last 2014
0000-0002-1250-093XORCID · verified

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

Artificial intelligence and machine learning · 3Systems, architecture and hardware · 3Graphics, computer vision, multimedia, augmented reality and games · 2Applied, interdisciplinary, general and emerging computing · 2

Expertise — from the expertise taxonomy: the topics of the expert's papers under the CCF categories. A weight counts papers with recency: 1 for a paper about the topic, 0.3 when the topic is its context, halved every five years.

Artificial intelligence
3 papers
Robot manipulation · 100%
Computer networks
2 papers
Network performance modeling · 100%

Topics — the 5 heaviest of 5, each with the papers that count most for it

TopicWeightPapersLastEvidence papers
Robotics › Robot manipulation › medical robotics
surgical robotics
0.332014
Development of a smart surgical robot with bended forceps for infant congenital esophageal atresia surgery · ICRA 2014
A remote surgery experiment between Japan and Thailand over Internet using a low latency CODEC system · ICRA 2007
A Remote Surgery Experiment between Japan-Korea using the Minimally Invasive Surgical System · ICRA 2006
Robotics › Robot manipulation › medical robotics › surgical robotics
minimally invasive surgery
0.212014
Development of a smart surgical robot with bended forceps for infant congenital esophageal atresia surgery · ICRA 2014
Robotics › Robot manipulation › medical robotics › surgical robotics
remote surgery
0.122007
A remote surgery experiment between Japan and Thailand over Internet using a low latency CODEC system · ICRA 2007
A Remote Surgery Experiment between Japan-Korea using the Minimally Invasive Surgical System · ICRA 2006
Robotics › Robot manipulation › medical robotics
surgical instrument design
0.112014
Development of a smart surgical robot with bended forceps for infant congenital esophageal atresia surgery · ICRA 2014
Network performance modeling
time-delay
0.022007
A remote surgery experiment between Japan and Thailand over Internet using a low latency CODEC system · ICRA 2007
A Remote Surgery Experiment between Japan-Korea using the Minimally Invasive Surgical System · ICRA 2006

Methods — techniques the papers use, named apart from their topics

universal joint · 0.2screw-pair mechanism · 0.2SCARA · 0.2low latency CODEC · 0.1UDP/IP · 0.1TCP/IP · 0.1laparoscopic cholecystectomy · 0.1internet testbed · 0.1ISDN · 0.1
YearPublicationVenuePosition
2014 Development of a smart surgical robot with bended forceps for infant congenital esophageal atresia surgery
abstract
Minimally invasive surgery (MIS) is commonly used in pediatric operations. This method greatly benefits patients because of the reduced surgical trauma. To perform such surgery smoothly, doctors must be highly skilled. To reduce operating difficulties, a great deal of research on surgical systems have been carried out. However, in some cases, smaller workspaces limit the application of MIS. For example, the workspace of infant congenital esophageal atresia (ICEA) surgery is only around 30×30×30 mm. Until now, most ICEA surgeries have been manually performed with traditional instruments. This paper presents a smart surgical robot (SSR) for ICEA surgery. The robot is composed of two slave arms, each consisting of a positioning manipulator and a surgical tool manipulator. The positioning manipulator uses a selective compliance assembly robot arm (SCARA) and a screw-pair mechanism to achieve translational movement in 3D space, and the surgical tool manipulator uses a “double screw drive + universal joint” structure to allow an omni directional bending motion. During surgery, the surgeon first creates the workspace manually to explore the target esophagus. The SSR system is then applied to perform operation. The configuration of the SSR means it can perform tissue manipulation under endoscopic view in a small workspace. Experimental results show that the endoscopic view permits the SSR system to be operated intuitively and accurately in the target workspace.
Quanquan Liu 0001, Yo Kobayashi, Bo Zhang 0028, Takehiko Noguchi, Yu Takahashi, Yuya Nishio, Yang Cao 0006, Satoshi Ieiri, Kazutaka Toyoda, Munenori Uemura, Morimasa Tomikawa, Makoto Hashizume, Masakatsu G. Fujie
ICRA8
2012 Developing Essential Rigid-Flexible Outer Sheath to Enable Novel Multi-piercing Surgery
Siyang Zuo, Takeshi Ohdaira, Kenta Kuwana, Yoshihiro Nagao, Satoshi Ieiri, Makoto Hashizume, Takeyoshi Dohi, Ken Masamune
MICCAI (1)5
2011 Nonmetallic Rigid-Flexible Outer Sheath with Pneumatic Shapelocking Mechanism and Double Curvature Structure
Siyang Zuo, Ken Masamune, Kenta Kuwana, Morimasa Tomikawa, Satoshi Ieiri, Takeshi Ohdaira, Makoto Hashizume, Takeyoshi Dohi
MICCAI (1)5
2007 A remote surgery experiment between Japan and Thailand over Internet using a low latency CODEC system
abstract
Remote surgery is one of the most desired applications in the context of recent advanced medical technologies. For a future expansion of remote surgery, it is important to use conventional network infrastructures such as Internet. However, using such conventional network infrastructures, we are confronting time-delay problems of data transmission. In this paper, a remote surgery experiment between Japan and Thailand using a research and development Internet is presented. In the experiment, the image and audio information was transmitted by a newly developed low latency CODEC system to shorten the time-delay. By introducing the low latency CODEC system, the time-delay was shortened compared with the past remote surgery experiments despite the longer distance. We also conducted several network measurements such as a comparison between TCP/IP and UDP/IP about the control signal transmission.
Jumpei Arata, Hiroki Takahashi, Phongsaen Pitakwatchara, Shin'ichi Warisawa, Kazuo Tanoue, Kozo Konishi, Satoshi Ieiri, Shuji Shimizu, Naoki Nakashima, Koji Okamura, Yuichi Fujino, Yukihiro Ueda, Pornarong Chotiwan, Mamoru Mitsuishi, Makoto Hashizume
ICRA7
2006 A Remote Surgery Experiment between Japan-Korea using the Minimally Invasive Surgical System
abstract
Several robotic surgical systems have been developed for MIS (minimally invasive surgery) including commercialized products such as da Vinci and ZEUS. We have developed a minimally invasive surgical system, which have carried out remote surgery experiments for five times at the writing time. In this paper, a remote surgery experiment, which was conducted between Japan and Korea by using the developed minimally invasive surgical system is described. Research & Development (R & D) Internet testbet, APII (Asia-Pacific Information Infrastructure), which consists of an optical submarine cable network KJCN (Korea-Japan Cable Network), was used. In the experiment, a laparoscopic cholecystectomy was successfully carried out on a pig. The network time-delays of control signal and images were 6.5 msec and 435.5 msec respectively. A comparison of remote surgery experiments using ISDN and the Internet was studied
Jumpei Arata, Hiroki Takahashi, Phongsaen Pitakwatchara, Shin'ichi Warisawa, Kozo Konishi, Kazuo Tanoue, Satoshi Ieiri, Shuji Shimizu, Naoki Nakashima, Koji Okamura, Sungmin Kim, Joon-Soo Hahm, Makoto Hashizume, Mamoru Mitsuishi
ICRA7