B. Allen, D. Chu, A. Shapiro, and P. Faloutsos, On the beat!: timing and tension for dynamic characters Eurographics Association, Proceedings of the 2007 ACM SIGGRAPH/Eurographics symposium on Computer animation, SCA '07, pp.239-247, 2007.

Y. Abe, M. Da-silva, and J. Popovi´cpopovi´c, Multiobjective control with frictional contacts Eurographics Association, Proceedings of the 2007 ACM SIGGRAPH/Eurographics symposium on Computer animation, SCA '07, pp.249-258, 2007.

D. A. Okan-arikan, D. A. Forsythafo05-]-okan-arikan, J. F. Forsyth, and . O-'brien, Interactive motion generation from examples Pushing people around, Proceedings of the 2005 ACM SIGGRAPH/Eurographics symposium on Computer animation, SCA '05, pp.483-490, 2002.

T. Karim, A. Gaudin, A. Meyer, S. Buendia, and . Bouakaz, Transactions on edutainment vi. chapter Adding physical like reaction effects to skeleton-based animations using controllable pendulums, pp.111-121, 2011.

T. Karim, A. Gaudin, A. Meyer, S. Buendia, and . Bouakaz, Computer animation and virtual worlds. chapter Procedural Locomotion of Multi-Legged Characters in Dynamic Environments, p.78, 2012.

A. M. Alexanderale03-]-r and . Alexander, Optima for animals. Princeton paperbacks Principles of animal locomotion, pp.121-83, 1996.

Y. Abe, C. K. Liu, and Z. Popovi´cpopovi´c, Momentum-based parameterization of dynamic character motion Eurographics Association, Proceedings of the 2004 ACM SIGGRAPH/Eurographics symposium on Computer animation, SCA '04, pp.173-182, 2004.

A. Karim, T. Meyer, A. Gaudin, S. Buendia, and . Bouakaz, Generic Spine Model with Simple Physics for Life-Like Quadrupeds and Reptiles, VRIPHYS 2012: 9th Workshop on Virtual Reality Interaction and Physical Simulation, p.99, 2012.
URL : https://hal.archives-ouvertes.fr/hal-01126423

Y. Abe and J. Popovi´cpopovi´c, Interactive animation of dynamic manipulation Eurographics Association, Proceedings of the 2006 ACM SIGGRAPH/Eurographics symposium on Computer animation, SCA '06, pp.195-204, 2006.

C. Donna, S. P. Boone, and . Azen, Normal range of motion of joints in male subjects, The Journal of Bone and Joint Surgery, vol.61, pp.756-759, 1979.

D. Baraff, Linear-time dynamics using Lagrange multipliers, Proceedings of the 23rd annual conference on Computer graphics and interactive techniques , SIGGRAPH '96, pp.137-146, 1996.
DOI : 10.1145/237170.237226

URL : http://citeseerx.ist.psu.edu/viewdoc/summary?doi=10.1.1.208.6723

R. Barzel, Faking dynamics of ropes and springs, IEEE Computer Graphics and Applications, vol.17, issue.3, pp.31-39, 1939.
DOI : 10.1109/38.586016

A. Berthoz, . La, . Jacob-]-ronen, J. F. Barzel, D. N. Hughes et al., Plausible motion simulation for computer graphics animation, Proceedings of the Eurographics workshop on Computer animation and simulation '96, pp.50-183, 1996.

I. Norman, H. Badler, R. W. Ko, E. Vincent-bonnafous, J. Menou et al., Animating human locomotion with inverse dynamics Efficiency And Economy in Animal Physiology. Cambridge environmental chemistry series Co-operative and concurrent blending motion generators A global human walking model with real-time kinematic personification, 29 REFERENCES REFERENCES [Bla05] WSCG (Short Papers), pp.50-59, 1990.

P. Beaudoin, M. Van-de-panne, and P. Poulin, Automatic construction of compact motion graphs, p.13, 2007.

E. A. John, A. Bertram, and . Ruina, Multiple walking speed frequency relations are predicted by constrained optimization, Journal of Theoretical Biology, p.15, 2001.

]. J. Bre65 and . Bresenham, Algorithm for computer control of a digital plotter, IBM Syst. J, vol.4, issue.55, pp.25-30, 1965.

R. Blickhan, A. Seyfarth, H. Geyer, S. Grimmer, H. Wagner et al., Intelligence by mechanics Versatile walk engine, Hilosophical Transactions of the Royal Society -Series A: Mathematical, Physical and Engineering Sciences Journal of Game Development, vol.365, issue.1, pp.25-39, 2004.

P. Cbvdp09-]-stelian-coros, M. Beaudoin, and . Van-de-panne, Robust task-based control policies for physics-based characters, ACM SIGGRAPH Asia 2009 papers, SIGGRAPH Asia '09, p.77, 2009.

P. Cbvdp10-]-stelian-coros, M. Beaudoin, and . Van-de-panne, Generalized biped walking control, ACM SIGGRAPH 2010 papers, SIGGRAPH, pp.1-130, 2010.

P. Cbyvdp08-]-stelian-coros, K. Beaudoin, M. Kang-yin, and . Van-de-pann, Synthesis of constrained walking skills 26 REFERENCES REFERENCES [CC10] N. Courty and A. Cuzol. Conditional stochastic simulation for character animation, ACM Trans. Graph. Comput. Animat. Virtual Worlds, vol.271139, issue.21, pp.1-113443, 2008.

S. Capell, S. Green, B. Curless, T. Duchamp, and Z. Popovi´cpopovi´c, Interactive skeleton-driven dynamic deformations, Proceedings of the 29th annual conference on Computer graphics and interactive techniques, SIGGRAPH '02, pp.586-593, 2002.
DOI : 10.1145/566570.566622

URL : http://citeseerx.ist.psu.edu/viewdoc/summary?doi=10.1.1.18.5757

D. [. Chadwick, R. E. Haumann, and . Parent, Layered construction for deformable animated characters, Proceedings of the 16th annual conference on Computer graphics and interactive techniques, SIGGRAPH '89, pp.243-252, 1989.
DOI : 10.1145/74333.74358

M. Geol-choi, M. Kim, K. Hyun, and J. Lee, Deformable Motion: Squeezing into Cluttered Environments, Computer Graphics Forum, vol.26, issue.3, pp.445-453, 2011.
DOI : 10.1111/j.1467-8659.2011.01889.x

A. Ckj-+-11-]-stelian-coros, B. Karpathy, L. Jones, M. Reveret, and . Van-de-panne, Locomotion skills for simulated quadrupeds, ACM SIGGRAPH 2011 papers, pp.1-59, 2011.

J. Chestnutt, M. Lau, G. Cheung, J. Kuffner, J. Hodgins et al., Footstep Planning for the Honda ASIMO Humanoid, Proceedings of the 2005 IEEE International Conference on Robotics and Automation, p.35, 2005.
DOI : 10.1109/ROBOT.2005.1570188

M. Gyu-choi, J. Lee, and S. Y. Shin, Planning biped locomotion using motion capture data and probabilistic roadmaps

G. Clauzel, L. Revéret, J. Inria-rhône-alpes-]-damien-djaouti, J. Alvarez, I. Martin-de-lasa et al., Classifying Serious Games IGI Global, http://www.igi-global.com, 2011. x, 1 REFERENCES REFERENCES [Dij59] E. W. Dijkstra. A note on two problems in connexion with graphs [dL11] Martin de Lasa. Feature-Based Control Of Physics-Based Character Animation Prioritized optimization for task-space control Featurebased locomotion controllers Interactive simulation of stylized human locomotion, Handbook of Research on Improving Learning and Motivation through Educational Games: Multidisciplinary Approaches, chapter 6 Proceedings of the 2009 IEEE ACM SIGGRAPH 2008 papers, SIGGRAPH '08, pp.32-118, 1959.

K. G. Der, R. W. Sumner, and J. Popovi´cpopovi´c, Inverse kinematics for reduced deformable models, ACM SIGGRAPH 2006 Papers, SIGGRAPH '06, pp.1174-1179, 2006.

[. Faure, Fast iterative refinement of articulated solid dynamics, IEEE Transactions on Visualization and Computer Graphics, vol.5, issue.3, pp.268-276, 1999.
DOI : 10.1109/2945.795217

URL : https://hal.archives-ouvertes.fr/inria-00537516

F. Faure, G. Debunne, M. Cani, and F. Multon, Dynamic analysis of human walking 22 [Fea87] Roy Featherstone. Robot Dynamics Algorithm, 8th Eurographics Workshop on Computer Animation and Simulation, p.20, 1987.

R. Featherstone, A Divide-and-Conquer Articulated-Body Algorithm for Parallel O(log(n)) Calculation of Rigid-Body Dynamics. Part 1: Basic Algorithm, The International Journal of Robotics Research, vol.18, issue.9, p.110, 1999.
DOI : 10.1177/02783649922066619

R. Featherstone, R. J. Full, and D. E. Koditschek, A divide-and-conquer articulated-body algorithm for parallel o(log(n)) calculation of rigid-body dynamics. part 2: Trees, loops,& accuracy Templates and anchors neuromechanical hypotheses of legged locomotion on land, The Journal of Experimental Biology, vol.20, issue.110, p.25, 1999.

C. Anthony, N. S. Fang, L. Pollard-laurent-favreau, C. Reveret, M. Depraz et al., Efficient synthesis of physically valid human motion Animal gaits from video A survey of spatial deformation from a user-centered perspective, ACM SIGGRAPH / Eurographics Symposium on Computer Animation, SCA, pp.417-426, 2003.

M. Girard, Interactive design of 3-D computer-animated legged animal motion, Proceedings of the 1986 workshop on Interactive 3D graphics , SI3D '86, pp.131-150, 1987.
DOI : 10.1145/319120.319131

[. Gleicher, Motion editing with spacetime constraints, apr 1997. xii, 11 [Gle98] Michael Gleicher Retargetting motion to new characters, Proceedings of the 25th annual conference on Computer graphics and interactive techniques, SIGGRAPH '98, pp.33-42, 1998.
DOI : 10.1145/253284.253321

URL : http://citeseerx.ist.psu.edu/viewdoc/summary?doi=10.1.1.81.786

[. Anthony, A. Maciejewski-keith-grochow, S. L. Martin, A. Hertzmann, and Z. Popovi´cpopovi´c, Computational modeling for the computer animation of legged figures Style-based inverse kinematics 18 REFERENCES REFERENCES [GRVT06] Alejandra García Rojas, Frédéric Vexo, and Daniel Thalmann. Individualized reaction movements for virtual humans, Proceedings of the 12th annual conference on Computer graphics and interactive techniques, SIGGRAPH '85 Proceedings of the 4th international conference on Computer graphics and interactive techniques in Australasia and Southeast Asia, GRAPHITE '06 Kovar, and Andrew Jepsen. Snap-together motion: assembling run-time animations, pp.13-263, 1985.

E. Hsu, M. Da-silva, and J. Popovi´cpopovi´c, Guided time warping for motion editing Eurographics Association, Proceedings of the 2007 ACM SIGGRAPH/Eurographics symposium on Computer animation, SCA '07, pp.45-52, 2007.

R. Heck and M. Gleicher, Parametric motion graphs, Proceedings of the 2007 symposium on Interactive 3D graphics and games , I3D '07, pp.129-136, 2006.
DOI : 10.1145/1230100.1230123

URL : http://citeseerx.ist.psu.edu/viewdoc/summary?doi=10.1.1.108.8306

S. L. Edmond, T. Ho, C. Komura, and . Tai, Spatial relationship preserving character motion adaptation, ACM Trans. Graph, vol.29338, issue.4, pp.1-33, 2010.

[. Hart, N. Nilsson, and B. Raphael, A Formal Basis for the Heuristic Determination of Minimum Cost Paths, IEEE Transactions on Systems Science and Cybernetics, vol.4, issue.2, pp.100-107, 1968.
DOI : 10.1109/TSSC.1968.300136

J. K. Hodgins, Biped gait transitions, Proceedings. 1991 IEEE International Conference on Robotics and Automation, p.15, 1991.
DOI : 10.1109/ROBOT.1991.131936

J. K. Hodgins, J. F. O-'brien, and V. B. Zordan, Combining active and passive simulations for secondary motion Real-time motion retargeting to highly varied user-created morphologies, ACM SIGGRAPH 97 Visual Proceedings: The art and interdisciplinary programs of SIGGRAPH '97, SIGGRAPH '97, pp.168-271, 1997.

J. K. Hodgins, W. L. Wooten, D. C. Brogan, and J. F. O-'brien, Animating human athletics, Proceedings of the 22nd annual conference on Computer graphics and interactive techniques , SIGGRAPH '95, pp.71-78, 1995.
DOI : 10.1145/218380.218414

URL : http://citeseerx.ist.psu.edu/viewdoc/summary?doi=10.1.1.10.3040

D. F. Hoyt, S. J. Wickler, and E. A. Cogger, Time of contact and step length the effect of limb length, running speed, load carrying and incline, The Journal of Experimental Biology, p.15, 2000.

L. Ikemoto, O. Arikan, and D. Forsyth, Learning to move autonomously in a hostile world, ACM SIGGRAPH 2005 Sketches on , SIGGRAPH '05, p.37, 2005.
DOI : 10.1145/1187112.1187167

L. Ikemoto, O. Arikan, and D. Forsyth, Knowing when to put your foot down, Proceedings of the 2006 symposium on Interactive 3D graphics and games , SI3D '06, pp.49-53, 2006.
DOI : 10.1145/1111411.1111420

URL : http://citeseerx.ist.psu.edu/viewdoc/summary?doi=10.1.1.151.1882

V. T. Inman, Human locomotion, Canadian Medical Association, vol.15, issue.80, pp.81-121, 1966.

R. Skovbo and J. , Dynamic Walking With Semi-Procedural Animation Optimization-based interactive motion synthesis, ACM Trans. Graph, vol.28, issue.23, pp.7710-7711, 2009.

[. Kallmann, Analytical inverse kinematics with body posture control, Computer Animation and Virtual Worlds, vol.4, issue.2, pp.79-91, 2008.
DOI : 10.1002/cav.176

A. D. Kuo, J. M. Donelan, A. R. , L. Kovar, and M. Gleicher, Energetic consequences of walking like an inverted pendulum: Step-to-step transitions Automated extraction and parameterization of motions in large data sets, ACM SIGGRAPH REFERENCES 2004 Papers, SIGGRAPH '04KGP02] Lucas Kovar, Michael Gleicher, and Frédéric Pighin. Motion graphs, pp.559-568, 2004.

K. Kim, K. Hyun, J. Kim, and J. Lee, Control systems for human running using an inverted pendulum model and a reference motion capture sequence Aire-la-Ville Real-time obstacle avoidance for manipulators and mobile robots Synchronized multi-character motion editing, Proceedings of the 2010 ACM SIGGRAPH/Eurographics Symposium on Computer Animation, SCA '10 ACM SIGGRAPH 2009 papers, SIGGRAPH '09, pp.473-482, 1986.

[. Kudoh, T. Komura, K. Ikeuchi-]-shunsuke-kudoh, T. Komura, and K. Ikeuchi, The dynamic postural adjustment with the quadratic programming method Stepping motion for a human-like character to maintain balance against large perturbations, International Conference on Intelligent Robots and Systems Proceedings of the IEEE International Conference on Robotics and Automation, pp.2563-2568, 2002.

. Kajita, . Kanehiro, . Kaneko, H. Yokoi, and . Hirukawa, The 3d linear inverted pendulum model: a simple modeling for a biped walking pattern generation, Proceedings 2001 IEEERSJ International Conference on Intelligent Robots and Systems Expanding the Societal Role of Robotics in the the Next Millennium Cat No01CH37180, pp.239-246, 2001.

J. Kuffner, . Jr, N. Koichi, M. Satoshi-kagami, H. Inaba et al., Footstep planning among obstacles for biped robots A realtime pattern generator for biped walking, Proc. of 2001 IEEE Intl. Conf. on Intelligent Robots and Systems (IROS ICRA, pp.500-505, 2001.

F. Shuuji-kajita, K. Kanehiro, K. Kaneko, K. Fujiwara, and . Yokoi, Biped walking pattern generation by using preview control of zero-moment point, Proceedings of the IEEE International Conference on Robotics and Automation, pp.1620-1626, 2003.

J. Kuffner, S. Kagami, K. Nishiwaki, M. Inaba, and H. Inoue, Online footstep planning for humanoid robots, 2003 IEEE International Conference on Robotics and Automation (Cat. No.03CH37422), pp.932-937, 2003.
DOI : 10.1109/ROBOT.2003.1241712

P. Kanyuk, C. Lawrencekma05, ]. R. Kulpa, F. Multon, B. Kokkevis et al., Morphology-independent representation of motions for interactive human-like animation Computer Graphics Forum User-controlled physics-based animation for articulated figures Practical physics for articulated characters Modal locomotion: animating virtual characters with natural vibrations, ACM SIGGRAPH 2008 talks, SIGGRAPH Eurographics 2005 special issue Proceedings of the Computer Animation, CA '96 Proceedings of Game Developers Conference, pp.1-26, 1996.

[. Kovar, J. Schreiner, and M. Gleicher, Footskate cleanup for motion capture editing, Proceedings of the 2002 ACM SIGGRAPH/Eurographics symposium on Computer animation , SCA '02, p.14, 2002.
DOI : 10.1145/545261.545277

A. D. Kuo, A Simple Model of Bipedal Walking Predicts the Preferred Speed???Step Length Relationship, Journal of Biomechanical Engineering, vol.123, issue.3, pp.264-269, 2001.
DOI : 10.1115/1.1372322

A. D. Kuo, Energetics of Actively Powered Locomotion Using the Simplest Walking Model, Journal of Biomechanical Engineering, vol.124, issue.1, p.25, 2002.
DOI : 10.1115/1.1427703

[. Kalisiak and M. Van-de-panne, A grasp-based motion planning algorithm for character animation, Eurographics Workshop on Computer Animation and Simulation, pp.43-58, 2000.
DOI : 10.1007/978-3-7091-6344-3_4

URL : http://citeseerx.ist.psu.edu/viewdoc/summary?doi=10.1.1.1.6736

F. Lamarche, TopoPlan: a topological path planner for real time human navigation under floor and ceiling constraints, Computer Graphics Forum, vol.114, issue.7, p.33, 2009.
DOI : 10.1111/j.1467-8659.2009.01405.x

URL : https://hal.archives-ouvertes.fr/inria-00432184

D. Yoan, R. Landau-cynthia, C. T. Lee, and . Farley, Adaptive control : the model reference approach Determinants of the center of mass trajectory in human walking and running, The Journal of Experimental Biology, pp.112-134, 1979.

M. Lau and J. J. Kuffner, Precomputed search trees: planning for interactive goal-driven animation Aire-la-Ville Data-driven biped control, Proceedings of the 2006 ACM SIGGRAPH/Eurographics symposium on Computer animation, SCA '06 Eurographics Association. 37 [LKL10] Yoonsang Lee, Sungeun Kim, and Jehee LeeLLKP11] Sergey Levine, Yongjoon Lee, Vladlen Koltun, and Zoran Popovi´cPopovi´c. Space-time planning with parameterized locomotion controllers, pp.299-3081, 2006.

L. Lopez, F. Lamarche, and T. Li, Space-time planning in dynamic environments with unknown evolution Synthesis of complex dynamic character motion from simple animations, Proceedings of the 4th international conference on Motion in Games 37 REFERENCES [LLP09] Yongjoon Lee, Seong Jae Lee, and Zoran Popovi´cPopovi´c. Compact character controllers ACM SIGGRAPH Asia 2009 papers, SIGGRAPH Asia '09, pp.1-23, 2002.

J. Lee and S. Y. Shin, A hierarchical approach to interactive motion editing for human-like figures, Proceedings of the 26th annual conference on Computer graphics and interactive techniques , SIGGRAPH '99, pp.39-48, 1999.
DOI : 10.1145/311535.311539

G. David and . Luenberger, Linear and Nonlinear Programming, p.18, 1984.

[. Laszlo, F. Michiel-van-de-panne, and . Eugene, Limit cycle control and its application to the animation of balancing and walking, Proceedings of the 23rd annual conference on Computer graphics and interactive techniques , SIGGRAPH '96, pp.155-162, 1996.
DOI : 10.1145/237170.237231

J. F. Laszlo, E. F. Van-de-panne, M. Lo, and . Zwicker, Control of physically-based simulated walking Real-time planning for parameterized human motion, IMAGINA Proceedings of the 2008 ACM SIGGRAPH/Eurographics Symposium on Computer Animation, SCA '08 Eurographics Association. 37 [Mar93] Etienne-Jules Marey. Locomotion comparée chez les différents animaux, nouvelles applications de la chronophotographie. La Nature, pp.29-38, 1893.

L. Mccann, What is motion capture? http://lukemccann. wordpress.com/motion-capture, 2008.

[. Mordatch, A. Martin-de-lasa, and . Hertzmann, Robust physics-based locomotion using low-dimensional planning Computer animation of human walking: a survey, REFERENCES [MFCD99] Franck Multon, pp.1-71, 1999.

F. Multon, R. Kulpa, L. Hoyet, and T. Komura, Motion in games. chapter From Motion Capture to Real- Time Character Animation, pp.72-81, 2008.

U. Muico, Y. Lee, J. Popovi´cpopovi´c, and Z. Popovi´cpopovi´c, Contact-aware nonlinear control of dynamic characters, ACM SIGGRAPH 2009 papers, SIGGRAPH '09, pp.1-81, 2009.

U. Muico, J. Popovi´cpopovi´c, Z. Müller, J. Stam, D. James et al., Composite control of physically simulated characters Real time physics: class notes The human figure in motion. Dover pictorial archive series Human shoulder modeling including scapulo-thoracic constraint and joint sinus cones. Computers and Graphics Animals in Motion Dynamic simulation of autonomous legged locomotion Psychologically inspired anticipation and dynamic response for impacts to the head and upper body, ACM SIGGRAPH 2008 classes, SIGGRAPHMT98] Walter Maurel and Daniel Thalmann Proceedings of the 17th annual conference on Computer graphics and interactive techniques, SIGGRAPH '90 28 REFERENCES [MZS09] Adriano Macchietto, Victor Zordan, and Christian R. Shelton. Momentum control for balance, pp.1-16, 1955.

M. Nagurka, S. Huang-nunes, P. G. Kry, and V. B. Zordan, A mass-spring-damper model of a bouncing ball American Control Conference Using natural vibrations to guide control for locomotion, Proceedings of the 2004 Proceedings of the ACM SIGGRAPH Symposium on Interactive 3D Graphics and Games, I3D '12, pp.499-504, 2004.

N. Nguyen, N. Wheatland, D. Brown, B. Parise, C. K. Liu et al., Performance capture with physical interaction Eurographics Association, Proceedings of the 2010 ACM SIGGRAPH/Eurographics Symposium on Computer Animation, SCA '10, pp.189-195, 2010.

M. Oshita and A. Makinouchi, A Dynamic Motion Control Technique for Human-like Articulated Figures, Computer Graphics Forum, vol.20, issue.3, 2001.
DOI : 10.1111/1467-8659.00512

M. Oshita and N. Masaoka, Generating Avoidance Motion Using Motion Graph, MIG'11, pp.120-131, 2011.
DOI : 10.1145/1276377.1276386

B. Marko, H. H. Popovic, M. Popovic, A. Hofmann, H. Hughplb95 et al., Angular momentum regulation during human walking: biomechanics and control Head and trunk movements in the frontal plane during complex dynamic equilibrium tasks in humans Center of mass velocity-position predictions for balance control Planning human walk in virtual environments, Proceedings of the IEEE Proceedings of the IEEE International Conference on Robotics and Automation Proc. IEEE/RSJ International Conference on Intelligent Robots and System, pp.23-2405, 1995.

J. E. Pratt and R. Tedrake, Velocity-based stability margins for fast bipedal walking Physically based motion transformation, Fast Motions in Biomechanics and Robotics Proceedings of the 26th annual conference on Computer graphics and interactive techniques, SIGGRAPH '99, pp.299-324, 1999.

[. Pan, L. Zhang, M. C. Lin, and D. Manocha, A hybrid approach for simulating human motion in constrained environments, Computer Animation and Virtual Worlds, vol.24, issue.3, pp.137-149, 1936.
DOI : 10.1002/cav.365

H. Marc and . Raibert, Legged robots that balance. Massachusetts Institute of Technology, 1986.

H. Marc and . Raibert, Trotting, pacing and bounding by a quadruped robot [Rat05] Ori Ratner. The Inverted Pendulum Model In Multi-Agent Simulations, Journal of Biomechanics, vol.23, pp.15-24, 1990.

M. Raibert, K. Blankespoor, G. Nelson, and R. Playter, Bigdog, the rough-terrain quadruped robot. The 17th, p.31, 2008.

J. Rebula, F. Cañas, J. Pratt, and M. C. Lin, Learning capture points for humanoid push recovery Adaptive dynamics of articulated bodies, 7th IEEE-RAS International Conference on Humanoid Robots 24 REFERENCES [RGL05] Stephane Redon, Nico Galoppo, pp.24-71, 2005.

H. Marc, J. K. Raibert, and . Hodgins, Animation of dynamic legged locomotion, SIGGRAPH Comput. Graph, vol.25, pp.349-358, 1921.

[. Robert, Analyse Biomécanique Du Maintien De L'´ equilibre Debout Suitè A Une Accélération Transitoire De La Surface D'appui, p.22, 2006.

S. A. Paul, N. S. Reitsma, and . Pollard, Evaluating motion graphs for character animation Modeling and control of periodic humanoid balance using the linear biped model, The 9th IEEE-RAS International Conference on Humanoid Robots, p.24, 2007.

K. Simssk00, ]. Wj-schwind, and D. Koditschek, Evolving virtual creatures Approximating the stance map of a 2-DOF monoped runner, Proceedings of the 21st annual conference on Computer graphics and interactive techniques, SIGGRAPH '94, pp.15-22, 1994.

A. Shapiro, M. Kallmann, and P. Faloutsos, Interactive motion correction and object manipulation, Symposium on Interactive 3D Games and Graphics, I3D'07, p.35, 2007.
DOI : 10.1145/1401132.1401208

H. Shin, L. Kovar, M. G. Kovar, M. Singh, M. Kapadia et al., Physical touch-up of human motions Fast and accurate goal-directed motion synthesis for crowds Footstep navigation for dynamic crowds, Proceedings of the 11th Pacific Conference on Computer Graphics and Applications, PG '03 IEEE Computer Society. 11 [SKG05] Mankyu Sung Proceedings of the 2005 ACM SIGGRAPH/Eurographics symposium on Computer animation, SCA '05 Symposium on Interactive 3D Graphics and Games, pp.194-291, 2003.

H. Shin, J. Lee, M. Gleicher, and S. Y. Shin, Computer puppetry: An importance-based approach, ACM Transactions on Graphics, vol.20, issue.2, p.11, 2001.
DOI : 10.1145/502122.502123

URL : http://citeseerx.ist.psu.edu/viewdoc/summary?doi=10.1.1.16.5055

A. Sulejmanpa?i´sulejmanpa?i´c and J. Popovi´cpopovi´c, Adaptation of performed ballistic motion, ACM Transactions on Graphics, vol.24, issue.1, pp.165-179, 2005.
DOI : 10.1145/1037957.1037966

S. Skrba, L. Reveret, F. Hétroy, M. Cani, and C. O. Sullivan, Quadruped animation, Eurographics Stateof-the-Art Report, pp.1-17, 2008.
URL : https://hal.archives-ouvertes.fr/inria-00331715

L. Skrba, F. Reveret, M. Hétroy, C. O. Cani, and . Sullivan, Animating Quadrupeds: Methods and Applications, Computer Graphics Forum, vol.19, issue.6, p.87, 2009.
DOI : 10.1111/j.1467-8659.2008.01312.x

URL : https://hal.archives-ouvertes.fr/inria-00365340

]. H. Svabv09, E. H. Martin-schepers, J. H. Van-asseldonk, P. H. Buurke, and . Veltink, Ambulatory estimation of center of mass displacement during walking, IEEE Transactions On Biomedical Engineering, p.22, 2009.

R. W. Sumner, M. Zwicker, C. Gotsman, and J. Popovi´cpopovi´c, Mesh-based inverse kinematics, ACM Transactions on Graphics, vol.24, issue.3, pp.488-495, 2005.
DOI : 10.1145/1073204.1073218

URL : http://citeseerx.ist.psu.edu/viewdoc/summary?doi=10.1.1.329.5828

Y. Huang and W. Lin, Real-time horse gait synthesis, Computer Animation and Virtual Worlds, vol.24, issue.2, p.31, 2012.
DOI : 10.1002/cav.1469

J. Tan, Y. Gu, G. Turk, and C. K. Liu, Articulated swimming creatures, ACM SIGGRAPH 2011 papers, pp.1-58, 2011.
DOI : 10.1145/2010324.1964953

URL : http://citeseerx.ist.psu.edu/viewdoc/summary?doi=10.1.1.225.4037

[. Tsai, W. Lin, K. B. Cheng, J. Lee, and T. Lee, Real-Time Physics-Based 3D Biped Character Animation Using an Inverted Pendulum Model, IEEE Transactions on Visualization and Computer Graphics, vol.16, issue.2, pp.325-337, 2010.
DOI : 10.1109/TVCG.2009.76

A. Treuille, Y. Lee, and Z. Popovi´cpopovi´c, Near-optimal character animation with continuous control, ACM SIGGRAPH 2007 papers, SIGGRAPH '07, pp.77-106, 1997.
DOI : 10.1145/1275808.1276386

URL : http://citeseerx.ist.psu.edu/viewdoc/summary?doi=10.1.1.143.6955

J. Daniel-thalmann, E. Shen, and . Chauvineau, Fast realistic human body deformations for animation and VR applications, Proceedings of CG International '96, p.166, 1996.
DOI : 10.1109/CGI.1996.511798

[. Turner, LEMAN: A System for Constructing and Animating Layered Elastic Characters, pp.185-203, 1995.
DOI : 10.1016/B978-0-12-227741-2.50018-9

N. Torkos, M. Van-de-panne, ]. B. Van-basten, P. W. Peeters, and A. Egges, Footprint-based quadruped motion synthesis The step space: example-based footprint-driven motion synthesis, Graphics Interface, p.29, 1998.

. Animat, Virtual Worlds, pp.433-441, 1929.

J. Van-de-panne, P. Laszlo, P. Huang, and . Faloutsos, Dynamic human simulation: Towards agile animated characters, IEEE International Conference on Robotics and Automation, 2000.

M. Vukobratovic, H. M. Herr, B. Borovac, M. Rakovic, M. B. Popovic et al., Biological principles of control selection for a humanoid robot's dynamic balance preservation. I A simple approach to nonlinear tensile stiffness for accurate cloth simulation, Milos Jovanovic, and Veljko Potkonjak, pp.639-678, 2008.

H. Van-welbergen, B. J. Van-basten, A. Egges, Z. M. Ruttkay, M. H. Overmars-herwin-van-welbergen et al., Real time character animation: A trade-off between naturalness and control 102 REFERENCES REFERENCES [vWvBE + 10 Real time animation of virtual humans: A trade-off between naturalness and control A combined optimization method for solving the inverse kinematics problems of mechanical manipulators Robotics and Automation, Eurographics, pp.38489-499, 1991.

[. Welman, Inverse Kinematics and Geometric Constraints for Articulated Figure Manipulation [microform], p.17, 1994.

J. M. Wang, D. J. Fleet, and A. Hertzmann, Optimizing walking controllers for uncertain inputs and environments, ACM Trans. Graph, p.26, 2009.

J. M. Wang, D. J. Fleet, and A. Hertzmann, Optimizing walking controllers for uncertain inputs and environments, ACM Trans. Graph, vol.29738, issue.4, pp.1-73, 2010.
DOI : 10.1145/1778765.1778810

URL : http://citeseerx.ist.psu.edu/viewdoc/summary?doi=10.1.1.167.2257

J. Wilhelms and A. Van-gelder, Fast and Easy Reach-Cone Joint Limits, Journal of Graphics Tools, vol.6, issue.2, pp.27-41, 2001.
DOI : 10.1016/S0021-9290(98)00098-0

M. W. Donald, J. Wu, V. B. Medina, and . Zordan, Stepping patterns in tarantula spiders Simple steps for simply stepping, Proceedings of the 4th International Symposium on Advances in Visual Computing, ISVC '08, pp.94-97, 1967.

[. Wu, Z. Wu, M. Tournier, L. Wu, V. Zordan-katsu-yamane et al., Optimal gait and form for animal locomotion Natural character posing from a large motion database Goal-directed stepping with momentum control Synthesizing animations of human manipulation tasks Layered dynamic control for interactive character swimming Eurographics Association, ACM SIGGRAPH 2003 Papers, SIGGRAPH '03 ACM SIGGRAPH 2009 papers, SIGGRAPH '09 Proceedings of the 2010 ACM SIGGRAPH/Eurographics Symposium on Computer Animation, SCA '10 Proceedings of the 2004 ACM SIGGRAPH/Eurographics symposium on Computer animation, SCA '04, pp.888-8951, 2003.

[. Yin, K. Loken, and M. Van-de-panne, Simbicon: simple biped locomotion control, ACM Trans. Graph, vol.26, issue.26, p.77, 2007.

[. Yin and D. K. Pai, Footsee: an interactive animation system, Proceedings of the 2003 ACM SIGGRAPH/Eurographics symposium on Computer animation, SCA '03 Eurographics Association. 29 [YPP05] Kangkang Yin, Dinesh K. Pai, and Michiel Van De Panne. Pacific graphics (2005) abstract data-driven interactive balancing behaviors, pp.329-338, 2003.

J. W. Young, B. A. Patel, and N. J. Stevens, Body mass distribution and gait mechanics in fat-tailed dwarf lemurs (Cheirogaleus medius) and patas monkeys (Erythrocebus patas), Journal of Human Evolution, vol.53, issue.1, p.15, 2007.
DOI : 10.1016/j.jhevol.2007.01.005

B. Victor, J. K. Zordan, and . Hodgins, Tracking and modifying upper-body human motion data with dynamic simulation, In COMPUTER ANIMATION AND SIMULATION, issue.11, pp.13-22, 1999.

J. K. Victor-brian-zordan and . Hodgins, Motion capturedriven simulations that hit and react Dynamic response for motion capture animation, Proceedings of the REFERENCES 2002 ACM SIGGRAPH/Eurographics symposium on Computer animation, SCA '02, pp.89-96, 2002.

A. Zordan, J. Macchietto, M. Medin, C. Soriano, R. Wu et al., Anticipation from example [Zor10] Victor Zordan. Angular momentum control in coordinated behaviors, Proceedings of the 2007 ACM symposium on Virtual reality software and technology, VRST '07 Proceedings of the Third international conference on Motion in games, MIG, pp.81-84, 2007.