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Special Section Technical Briefs

Outcomes of Muscle Effort Using a Novel Portable Laparoscopic Training System1

[+] Author and Article Information
Chun-Kai Huang, Ka-Chun Siu

Division of Physical Therapy Education,
School of Allied Health Professions,
University of Nebraska Medical Center,
Omaha, NE 68198
Center for Advanced Surgical Technology,
University of Nebraska Medical Center,
Omaha, NE 68198

Mohsen Zahiri

Department of Mechanical and Materials Engineering,
University of Nebraska–Lincoln,
Lincoln, NE 68588

Carl A. Nelson

Center for Advanced Surgical Technology,
University of Nebraska Medical Center,
Omaha, NE 68198
Department of Mechanical and Materials Engineering,
University of Nebraska–Lincoln,
Lincoln, NE 68588

Ryan Booton

College of Public Health,
University of Nebraska Medical Center,
Omaha, NE 68198

Accepted and presented at The Design of Medical Devices Conference (DMD2015), April 13–16, 2015, Minneapolis, MN, USA.

Manuscript received March 3, 2015; final manuscript received May 7, 2015; published online July 16, 2015. Editor: Arthur Erdman.

J. Med. Devices 9(3), 030942 (Sep 01, 2015) (3 pages) Paper No: MED-15-1098; doi: 10.1115/1.4030602 History: Received March 03, 2015; Revised May 07, 2015; Online July 16, 2015

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Copyright © 2015 by ASME
Topics: Performance , Muscle
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References

Munz, Y., Almoudaris, A. M., Moorthy, K., Dosis, A., Liddle, A. D., and Darzi, A. W., 2007, “Curriculum-Based Solo Virtual Reality Training for Laparoscopic Intracorporeal Knot Tying: Objective Assessment of the Transfer of Skill From Virtual Reality to Reality,” Am. J. Surg., 193(6), pp. 774–783. [CrossRef] [PubMed]
Zahiri, M., Nelson, C. A., and Siu, K. C., 2013, “Portable Laparoscopic Training System Using Virtual Reality,” ASME J. Med. Devices, 7(2), p. 020922. [CrossRef]
Zahiri, M., Booton, R., Nelson, C. A., and Siu, K. C., 2014, “Tool Tracking in a Laparoscopic Virtual Reality Training System,” ASME J. Med. Devices, 8(2), p. 020944. [CrossRef]
Huang, C. K., Head, M. J., Nelson, C. A., Oleynikov, D., and Siu, K. C., 2014, “Virtual Laparoscopic Surgical Skills Practice Using a Multi-Degree of Freedom Joystick,” Studies in Health Technology and Informatics (Medicine Meets Virtual Reality 21, Vol. 196), IOS Press, Amsterdam, pp. 170–174. [CrossRef]
Brown-Clerk, B., Siu, K. C., Katsavelis, D., Lee, I., Oleynikov, D., and Stergiou, N., 2008, “Validating Advanced Robot-Assisted Laparoscopic Training Task in Virtual Reality,” Studies in Health Technology and Informatics (Medicine Meets Virtual Reality 16, Vol. 132), IOS Press, Amsterdam, pp. 45–49.
Siu, K. C., Suh, I. H., Mukherjee, M., Oleynikov, D., and Stergiou, N., 2010, “The Impact of Environmental Noise on Robot-Assisted Laparoscopic Surgical Performance,” Surgery, 147(1), pp. 107–113. [CrossRef] [PubMed]
Suh, I. H., Mukherjee, M., Schrack, R., Park, S. H., Chien, J. H., Oleynikov, D., and Siu, K. C., 2011, “Electromyographic Correlates of Learning During Robotic Surgical Training in Virtual Reality,” Studies in Health Technology and Informatics (Medicine Meets Virtual Reality 18, Vol. 163), IOS Press, Amsterdam, pp. 630–634. [CrossRef]
Huang, C. K., Suh, I. H., Chien, J. H., Vallabhajosula, S., Oleynikov, D., and Siu, K. C., 2012, “Investigating the Muscle Activities of Performing Surgical Training Tasks Using a Virtual Simulator,” Studies in Health Technology and Informatics (Medicine Meets Virtual Reality 19, Vol. 173), IOS Press, Amsterdam, pp. 200–204. [CrossRef]
Soderberg, G. L., and Knutson, L. M., 2000, “A Guide for Use and Interpretation of Kinesiologic Electromyographic Data,” Phys. Ther., 80(5), pp. 485–498. http://ptjournal.apta.org/content/80/5/485.abstract [PubMed]

Figures

Grahic Jump Location
Fig. 1

Prototype of PortLTS

Grahic Jump Location
Fig. 2

Virtual training environment: peg transfer task

Grahic Jump Location
Fig. 3

Virtual training environment: needle passing

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