GoQBot: a caterpillar-inspired soft-bodied rolling robot
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[1] H. Bennet-Clark,et al. The energetics of the jump of the locust Schistocerca gregaria. , 1975, The Journal of experimental biology.
[2] R. Caldwell. A unique form of locomotion in a stomatopod—backward somersaulting , 1979, Nature.
[3] M. Labarbera. Why the Wheels Won't Go , 1983, The American Naturalist.
[4] C. Ellington. Power and efficiency of insect flight muscle. , 1985, The Journal of experimental biology.
[5] T. Casey. Energetics of Caterpillar Locomotion: Biomechanical Constraints of a Hydraulic Skeleton , 1991, Science.
[6] R. Josephson. Contraction dynamics and power output of skeletal muscle. , 1993, Annual review of physiology.
[7] Mary Wong,et al. Locomotion like a wheel? , 1993, Nature.
[8] P. Meckl,et al. Efficiency analysis of shape memory alloy actuators , 1994 .
[9] J. Shaw,et al. Thermomechanical aspects of NiTi , 1995 .
[10] J. Brackenbury. Fast locomotion in caterpillars. , 1999, Journal of insect physiology.
[11] Sunil K. Agrawal,et al. Spherical rolling robot: a design and motion planning studies , 2000, IEEE Trans. Robotics Autom..
[12] J. Shaw. Simulations of localized thermo-mechanical behavior in a NiTi shape memory alloy , 2000 .
[13] R. Josephson,et al. The efficiency of an asynchronous flight muscle from a beetle. , 2001, The Journal of experimental biology.
[14] E. Walters,et al. Defensive responses of larval Manduca sexta and their sensitization by noxious stimuli in the laboratory and field. , 2001, The Journal of experimental biology.
[15] François Michaud,et al. Roball, the Rolling Robot , 2002, Auton. Robots.
[16] Gangbing Song,et al. Position control of shape memory alloy actuators with internal electrical resistance feedback using neural networks , 2004 .
[17] Fumiya Iida,et al. New Robotics: Design Principles for Intelligent Systems , 2005, Artificial Life.
[18] J. Ou,et al. Strain Self-Sensing Property and Strain Rate Dependent Constitutive Model of Austenitic Shape Memory Alloy: Experiment and Theory , 2005 .
[19] Shinichi Hirai,et al. Crawling and Jumping by a Deformable Robot , 2006, Int. J. Robotics Res..
[20] Rhodri H. Armour,et al. Rolling in nature and robotics: A review , 2006 .
[21] N. Vidal,et al. FEM simulation of the Nitinol wire , 2008 .
[22] B. Trimmer,et al. Dynamic properties of a locomotory muscle of the tobacco hornworm Manduca sexta during strain cycling and simulated natural crawling , 2008, Journal of Experimental Biology.
[23] M. Burrows. Jumping strategies and performance in shore bugs (Hemiptera, Heteroptera, Saldidae) , 2009, Journal of Experimental Biology.
[24] Hong-Nan Li,et al. Modeling of the electrical resistance of shape memory alloy wires , 2010 .
[25] M. Burrows,et al. Actions of motor neurons and leg muscles in jumping by planthopper insects (hemiptera, issidae) , 2009, The Journal of comparative neurology.