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Innovation

Artificial tactile sensing approach in aortic-repair-laparoscopy: aorta cross clamping during surgery

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Pages 420-424 | Received 08 Jun 2011, Accepted 21 Sep 2011, Published online: 08 Nov 2011

References

  • Najarian, S., Dargahi, J., and Abouei, A., 2009, Artificial Tactile Sensing in Biomedical Engineering (McGraw-Hill, New York, NY, USA), pp. 49–72.
  • Najarian, S., and Afshari E., 2010, Applications of robots in surgery. In: A., Shukla and R., Tiwart (Eds) Intelligent Medical Technologies and Biomedical Engineering: tools and applications (IGI Global Publishers, New York, NY, USA), pp. 241–259.
  • Camarillo, D., Durmmel, T., and Salisbury, J., 2004, Robotic technology in surgery: past, present and future. The American Journal of Surgery, 188, 2S–15S.
  • Marescaux, J., and Rubino, F., 2005, Robotic surgery: potentials, barriers and limitations. European Surgery, 37, 279–283.
  • Ottermo, M.V., Ovstedal, M., Lang, T., Stavdahl, O., Yavuz, Y., Johansen, T.A., and Marvik, R., 2006, The role of tactile feedback in laparoscopic surgery. Surgical Laparoscopy Endoscopy & Percutaneous Techniques, 16, 390–400.
  • Westebring van der Putten, E.P., Goossens, R.H., Jakimowicz, J.J., and Dankelman, J., 2008, Haptics in minimally invasive surgery-a review. Minimally Invasive Therapy & Allied Technologies, 17, 3–16.
  • Najarian, S., Fallahnezhad, M., and Afshari, E., 2011, Advances in medical robotic systems with specific application in surgery—a review. Journal of Medical Engineering and Technology, 35, 19–31.
  • Dargahi, J., and Najarian, S., 2005, Advances in tactile sensors design/manufacturing and its impact on robotics application, a review. Indus Robot, 32, 268–281.
  • Schostek, S., Ho, C.N., Kalanovic, D., and Schurr, M.O., 2006, Artificial tactile sensing in minimally invasive surgery—a new technical approach. Minimally Invasive Therapy & Allied Technologies, 15, 296–304.
  • Hosseini, S.M., Towliat Kashani, S.M., Najarian, S., Panahi, F., Mousavi Naeini, S.R., and Mojra A., 2010, A medical tactile sensing instrument for detecting embedded objects, with specific application for breast examination. International Journal of Medical Robotics and Computer Assisted Surgery, 6, 73–82.
  • Mojra, A., Najarian, S., TowliatKashani and, S.M., Panahi, F., Yaghmaei M., 2011, A novel haptic robotic viscogram for characterizing the viscoelastic behaviour of breast tissue in clinical examination. International Journal of Medical Robotics and Computer Assisted Surgery, 7, 282–292.
  • Afshari, E., Najarian, S., and Simforoosh, N., 2010, Application of artificial tactile sensing approach in kidney-stone-removal laparoscopy. Biomedical Materials and Engineering, 20, 261–267.
  • Afshari, E., Najarian, S., Simforoosh, N., and Farkoush, H.S., 2011, Design and fabrication of a novel tactile sensory system applicable in artificial palpation. Minimally Invasive Therapy & Allied Technologies, 20, 22–29.
  • Abouei Mehrizi, A., Najarian, S., and Moini, M., 2011, Modeling, constructing, and testing of a novel tactile system to detect arterial stenosis by imitating surgeon’s palpation. International Journal of Academic Research, 2, 120–125.
  • Beasley, R.A., and Howe, R.D., 2002, Tactile tracking of arteries in robotic surgery. International Conference on Robotics & Automation, Washington, DC, 11–15 May 2002.
  • Society for Vascular Surgery [Internet]. Posted June 2010. Available online at: http://www.vascularweb.org/vascularhealth/vascularscreenings/Pages/medicare-aaa screening-benefit.aspx.
  • Cadière, G.B., Himpens, J., Germay, O., Izizaw, R., Degueldre, M., Vandromme, J., Capelluto, E., and Bruyns, J., 2001, Feasibility of robotic laparoscopy surgery: 146 cases. World Journal of Surgery, 25, 1467–1477.
  • Kolvenbach, R., 2006, Total laparoscopic aortic aneurysm surgery. Acta Chirurgica Belgica, 106, 36–39.
  • Remy, P.H., D’hont C.H., Amond, L., Wijtenburg, E., and Massin, H., 2006, Can all patients requiring aortic repair be treated laparoscopically? IMP Vascular, 289, 45–54.
  • Debing, E., Vanhulle, A., and Van den Brande, P., 2003, Laparoscopic Hand-Assisted Abdominal Aortic Surgery for Aneurysmal and Occlusive Disease: a One-Year Clinical Experience. Acta Chirurgica Belgica, 103, 36–39.
  • Kolvenbach, R., Schwierz, E., Wasilljew, S., Miloud, A., Puerschel, A., and Pinter, L., 2004, Total laparoscopically and robotically assisted aortic aneurysm surgery: a critical evaluation. Journal of Vascular Surgery, 39, 771–776.
  • Pahlavan, P., Najarian, S., Moini, M., Dehkhoda, S., and Abouei Mehrizi, A., 2011, Small, 4-degree-of-planar freedom robot for artery cross clamping during minimally invasive aorta repair surgery. The 5th International Conference on Bioinformatics and Biomedical Engineering (ICBBE 2011), Wuhan, China, 10–12 May 2011.
  • Valdez-Jasso, D., Banks, H.T., Haider, M.A., Bia, D., Zocalo, Y., Armentano, R.L. 2009, Lufsen, M.S., Viscoelastic models for passive arterial wall dynamics. Advances in Applied Mathematics and Mechanics, 1, 151–165.
  • Warriner, R.K., Johnston, K.W., and Cobbold, R.S., 2008, A viscoelastic model of arterial wall motion in pulsatile flow: implications for Doppler ultrasound clutter assessment. Physiological Measurement, 29, 157–179.
  • Martin Cancho, M.F., Sanchez Margallo, F.M., Soria, F., Diaz Guemes, I., Crisostomo, V., Calles, C., Lima, J.R., and Uson Gargallo, J., 2009, Physiological responses to different ischemic periods during laparoscopic infrarenal aortic cross-clamping: evaluation in an experimental animal model. Annals of Vascular Surgery, 23, 506–518.

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