Development of automatic puncture method to simulated blood vessel in semi-transparent skin model by noncontact position estimation using IR cameras

Author:

SAGAWA Koichi1,FUJIMOTO Takuto1,KOIDE Tatsuya1,NAGAI Chikara2

Affiliation:

1. Faculty of Science and Technology, Hirosaki University

2. Saitama Institute of Technology

Publisher

Japan Society of Mechanical Engineers

Subject

General Medicine

Reference17 articles.

1. Carvalho, P., Kesari A., Weaver S., Flaherty P. and Fischer G., Robotic assistive device for phlebotomy, Proceedings of the ASME 2015 International Design Engineering Technical Conference and Computers and Information in Engineering Conference, (2015), pp.V003T14A012-1-V003T14A012-6.

2. Chen, A, Balter, M., Maguir, T. and Yarmush, M., Real-time needle steering in response to rolling vein deformation by a 9-DOF image-guided autonomous venipuncture robot, Conference Proceeding of IEEE/RSJ International conference in Intelligent Robots and Systems (2015), pp.2633-2638.

3. Chen A. and Balter M., Multilayered tissue mimicking skin and vessel phantoms with tunable mechanical, optical, and acoustic properties, Medical physics, Vol43, No.6 (2016), pp.3117-3131.

4. Chen, A., Balter, M., Maguir, T. and Yarmush, M., Deep learning robotic guidance for autonomous vascular access, nature machine intelligence, Vol. 2 (2020), pp.104-115.

5. Hori, M., Miura, M., Arao, H., Harada, C. and Shimada T., Morphology of the topographical relations between cutaneous veins and nerves in the human upper extremity, Japanese Journal of Nursing Art and Science, Vol.8, No.2 (2009), pp.20-28 (in Japanese).

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