Observer-based controller for microrobot in pulsatile blood flow
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Antoine Ferreira | Matthieu Fruchard | Lounis Sadelli | Antoine Ferreira | Matthieu Fruchard | Lounis Sadelli
[1] Marcus L. Roper,et al. Microscopic artificial swimmers , 2005, Nature.
[2] J. Womersley. Method for the calculation of velocity, rate of flow and viscous drag in arteries when the pressure gradient is known , 1955, The Journal of physiology.
[3] Eric Lauga,et al. Propulsion by passive filaments and active flagella near boundaries. , 2010, Physical review. E, Statistical, nonlinear, and soft matter physics.
[4] Giovanna Rizzo,et al. Womersley Number-Based Estimates of Blood Flow Rate in Doppler Analysis: In Vivo Validation by Means of Phase-Contrast MRI , 2010, IEEE Transactions on Biomedical Engineering.
[5] Li Zhang,et al. Artificial bacterial flagella for micromanipulation. , 2010, Lab on a chip.
[6] A. Isidori. Nonlinear Control Systems , 1985 .
[7] Sylvain Martel,et al. Method of propulsion of a ferromagnetic core in the cardiovascular system through magnetic gradients generated by an MRI system , 2006, IEEE Transactions on Biomedical Engineering.
[8] Aaas News,et al. Book Reviews , 1893, Buffalo Medical and Surgical Journal.
[9] Estelle Courtial,et al. Estimation of the Blood Velocity for Nanorobotics , 2014, IEEE Transactions on Robotics.
[10] Metin Sitti,et al. Biomimetic propulsion for a swimming surgical micro-robot , 2003, Proceedings 2003 IEEE/RSJ International Conference on Intelligent Robots and Systems (IROS 2003) (Cat. No.03CH37453).
[11] R. Silverman,et al. Estimation of blood velocity with high frequency ultrasound , 1996, IEEE Transactions on Ultrasonics, Ferroelectrics and Frequency Control.
[12] Renzo Di Felice,et al. Empirical Relationships for the Terminal Settling Velocity of Spheres in Cylindrical Columns , 1999 .
[13] Ioannis K. Kaliakatsos,et al. Microrobots for minimally invasive medicine. , 2010, Annual review of biomedical engineering.
[14] Antoine Ferreira,et al. Adaptive Controller and Observer for a Magnetic Microrobot , 2013, IEEE Transactions on Robotics.
[15] Dochan Kwak,et al. Numerical simulation of local blood flow in the carotid and cerebral arteries under altered gravity. , 2006, Journal of biomechanical engineering.
[16] W. Marsden. I and J , 2012 .
[17] Moshe Shoham,et al. Propulsion Method for Swimming Microrobots , 2007, IEEE Transactions on Robotics.
[18] F. White. Viscous Fluid Flow , 1974 .
[19] Constantinos Mavroidis,et al. In Silico Studies of Magnetic Microparticle Aggregations in Fluid Environments for MRI-Guided Drug Delivery , 2012, IEEE Transactions on Biomedical Engineering.
[20] Jake J. Abbott,et al. How Should Microrobots Swim? , 2009, ISRR.
[21] C. Lowe,et al. A simulation study of the dynamics of a driven filament in an Aristotelian fluid. , 2002, Journal of theoretical biology.
[22] L. Silverman,et al. Controllability and Observability in Time-Variable Linear Systems , 1967 .
[23] Ali Zemouche,et al. On LMI conditions to design observers for Lipschitz nonlinear systems , 2013, Autom..
[24] Arthur J. Krener,et al. Locally Convergent Nonlinear Observers , 2003, SIAM J. Control. Optim..
[25] Antoine Ferreira,et al. Endovascular Magnetically Guided Robots: Navigation Modeling and Optimization , 2012, IEEE Transactions on Biomedical Engineering.