Baum, L. E., Petrie, T., Soules, G., & Weiss, N. (1970). A Maximization Technique Occurring in the Statistical Analysis of Probabilistic Functions of Markov Chains. The Annals of Mathematical Statistics, 41(1), 164-171. doi:10.1214/aoms/1177697196
Bauzano E y otros (2009). Three-Layer Control for Active Wrists in Robotized Laparoscopic Surgery. IEEE/RSJ International Conference on Intelligent Robots and Systems, Missouri, EEUU.
Brell, M., & Hein, A. (2007). Positioning Tasks in Multimodal Computer-Navigated Surgery. IEEE Multimedia, 14(4), 42-51. doi:10.1109/mmul.2007.81
[+]
Baum, L. E., Petrie, T., Soules, G., & Weiss, N. (1970). A Maximization Technique Occurring in the Statistical Analysis of Probabilistic Functions of Markov Chains. The Annals of Mathematical Statistics, 41(1), 164-171. doi:10.1214/aoms/1177697196
Bauzano E y otros (2009). Three-Layer Control for Active Wrists in Robotized Laparoscopic Surgery. IEEE/RSJ International Conference on Intelligent Robots and Systems, Missouri, EEUU.
Brell, M., & Hein, A. (2007). Positioning Tasks in Multimodal Computer-Navigated Surgery. IEEE Multimedia, 14(4), 42-51. doi:10.1109/mmul.2007.81
Butner, S. E., & Ghodoussi, M. (2003). Transforming a surgical robot for human telesurgery. IEEE Transactions on Robotics and Automation, 19(5), 818-824. doi:10.1109/tra.2003.817214
Fernández J.J., “Robots para movimiento de la cámara en cirugía laparoscópica”, ETSII, Universidad de Málaga, 2002.
Finlay, P. A., & Ornstein, M. H. (1995). Controlling the movement of a surgical laparoscope. IEEE Engineering in Medicine and Biology Magazine, 14(3), 289-291. doi:10.1109/51.391775
Gan Q., et al., “Comparison of two measurement fusion methods for Kalman filter based multisensory data fusion”, IEEE Transactions on Aerospace and Electronic Systems, 37(1), pp. 273–280.
Kalman, R. E. (1960). A New Approach to Linear Filtering and Prediction Problems. Journal of Basic Engineering, 82(1), 35-45. doi:10.1115/1.3662552
Megali, G., Sinigaglia, S., Tonet, O., & Dario, P. (2006). Modelling and Evaluation of Surgical Performance Using Hidden Markov Models. IEEE Transactions on Biomedical Engineering, 53(10), 1911-1919. doi:10.1109/tbme.2006.881784
Miklós, I., & Meyer, I. M. (2005). BMC Bioinformatics, 6(1), 231. doi:10.1186/1471-2105-6-231
Murphy K., “Hidden Markov Model (HMM)”, Toolbox for Matlab [Online]. Disponible: http://www.ai.mit.edu/∼murphyk/Software/HMM/hmm.html.
Nishikawa, A., Hosoi, T., Koara, K., Negoro, D., Hikita, A., Asano, S., … Monden, M. (2003). FAce MOUSe: a novel human-machine interface for controlling the position of a laparoscope. IEEE Transactions on Robotics and Automation, 19(5), 825-841. doi:10.1109/tra.2003.817093
Rabiner, L. R. (1989). A tutorial on hidden Markov models and selected applications in speech recognition. Proceedings of the IEEE, 77(2), 257-286. doi:10.1109/5.18626
Rabiner, L., & Juang, B. (1986). An introduction to hidden Markov models. IEEE ASSP Magazine, 3(1), 4-16. doi:10.1109/massp.1986.1165342
Rosen J., et al., “Objective Laparoscopic Skills Assessments of Surgical Residents Using Hidden Markov Models Based on Haptic Information and Tool/Tissue Interactions”, Studies in Health Technology and Informatics - Medicine Meets Virtual Reality, Newport Beach, CA, Enero 2001.
Rosen, J., Hannaford, B., Richards, C. G., & Sinanan, M. N. (2001). Markov modeling of minimally invasive surgery based on tool/tissue interaction and force/torque signatures for evaluating surgical skills. IEEE Transactions on Biomedical Engineering, 48(5), 579-591. doi:10.1109/10.918597
Rosen, J., Brown, J. D., Chang, L., Sinanan, M. N., & Hannaford, B. (2006). Generalized Approach for Modeling Minimally Invasive Surgery as a Stochastic Process Using a Discrete Markov Model. IEEE Transactions on Biomedical Engineering, 53(3), 399-413. doi:10.1109/tbme.2005.869771
Sackier, J. M., Wooters, C., Jacobs, L., Halverson, A., Uecker, D., & Wang, Y. (1997). Voice activation of a surgical robotic assistant. The American Journal of Surgery, 174(4), 406-409. doi:10.1016/s0002-9610(97)00128-1
Satava, R. M. (1993). Virtual reality surgical simulator. Surgical Endoscopy, 7(3), 203-205. doi:10.1007/bf00594110
Tsekos, N. V. (2009). MRI-guided robotics at the U of houston: EvolvingMethodologies for interventions and surgeries. 2009 Annual International Conference of the IEEE Engineering in Medicine and Biology Society. doi:10.1109/iembs.2009.5333681
Viterbi, A. J. (2006). A personal history of the Viterbi algorithm. IEEE Signal Processing Magazine, 23(4), 120-142. doi:10.1109/msp.2006.1657823
Wang et al., Wang Y., et al., “Automated endoscope system for optimal positioning”, Patente de invención número US5815640, Estados Unidos.
Zhang, S. H., Wang, D. X., Zhang, Y. R., Wang, Y. H., Wang, Y. G., & Ma, X. P. (s. f.). The human machine interface implementation for the robot assisted endoscopic surgery system. Proceedings. 11th IEEE International Workshop on Robot and Human Interactive Communication. doi:10.1109/roman.2002.1045662
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