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Biomedical subjects

G Hirzinger

Publications and source records attributed to G Hirzinger.

5 recordsLinked to original sources

Self-guided robotic camera control for laparoscopic surgery compared with human camera control.

BACKGROUND: In laparoscopic surgery, the surgeon no longer has direct visual control of the operation area, and a camera assistant who maneuvers the laparoscope is essential. Problems of cooperation between the two naturally arise, and a robotic assistant that automatically controls the laparoscope can offer a highly desirable alternative to this situation. METHODS: A self-guided robotic camera control system (SGRCCS) based upon a color tracking method has been developed and its use evaluated in 20 cases of laparoscopic cholecystectomy and compared with using human camera control. RESULTS: In 83% of the patients the procedures were successfully completed with the SGRCCS. Set-up time for the robot averaged 21 minutes; and the surgical time with and without the robot averaged 54 and 60 minutes, respectively. Using the robot instead of a human camera assistant significantly reduced both the frequency of the camera correction, 2.2 per hour compared with 15.3 per hour, and frequency of the lens cleaning, 1.0 per hour compared with 6.8 per hour. Subjective assessment by the surgeon revealed that the robot performed better than the human assistant in 71 % of the cases. CONCLUSIONS: In laparoscopic surgery, the SGRCCS offered optimal camera guidance and helped to maintain the surgeon's concentration during the operation.

Cholecystectomy, Laparoscopic↗

[Technical requirements and possibilities of teleconsultation in laparoscopic interventions].

Recent developments in robot technology and communication media have opened the way for their use in various medical techniques. Automated camera guidance as well as new telecommunication systems make it possible to carry out extensive laparoscopic operations precisely and to provide teaching assistance from great distances (so-called telepreceptorship). Long-term cost reduction, reduction of surgical complications and the improvement of quality standards are some of the benefits which could be realized by use of such systems.

Animals↗

Space robotics--DLR's telerobotic concepts, lightweight arms and articulated hands.

The paper briefly outlines DLR's experience with real space robot missions (ROTEX and ETS VII). It then discusses forthcoming projects, e.g., free-flying systems in low or geostationary orbit and robot systems around the space station ISS, where the telerobotic system MARCO might represent a common baseline. Finally it describes our efforts in developing a new generation of "mechatronic" ultra-light weight arms with multifingered hands. The third arm generation is operable now (approaching present-day technical limits). In a similar way DLR's four-fingered hand II was a big step towards higher reliability and yet better performance. Artificial robonauts for space are a central goal now for the Europeans as well as for NASA, and the first verification tests of DLR's joint components are supposed to fly already end of 93 on the space station.

Automation↗