A video multitracking system for quantification of individual behavior in a large fish shoal: Advantages and limits
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Pascal Poncin | Johann Delcourt | Nicolas Vandewalle | Christophe Becco | Christophe Becco | N. Vandewalle | P. Poncin | J. Delcourt
[1] H Okamoto,et al. Visualization of Cranial Motor Neurons in Live Transgenic Zebrafish Expressing Green Fluorescent Protein Under the Control of the Islet-1 Promoter/Enhancer , 2000, The Journal of Neuroscience.
[2] H. Chaté,et al. Onset of collective and cohesive motion. , 2004, Physical review letters.
[3] Charlotte K. Hemelrijk,et al. Artificial Fish Schools: Collective Effects of School Size, Body Size, and Body Form , 2003, Artificial Life.
[4] L P Noldus,et al. EthoVision: A versatile video tracking system for automation of behavioral experiments , 2001, Behavior research methods, instruments, & computers : a journal of the Psychonomic Society, Inc.
[5] Pascal Poncin,et al. A new automatic video multitracking system able to follow a large school , 2005 .
[6] Steven V. Viscido,et al. The effect of population size and number of influential neighbors on the emergent properties of fish schools , 2005 .
[7] A. Barabasi,et al. Collective Motion of Self-Propelled Particles: Kinetic Phase Transition in One Dimension , 1997, cond-mat/9712154.
[8] Qiling Xu,et al. Eph receptors and ephrins restrict cell intermingling and communication , 1999, Nature.
[9] Tetsu Nemoto,et al. A computer image processing system for quantification of zebrafish behavior , 2004, Journal of Neuroscience Methods.
[10] I. Couzin,et al. Self-Organization and Collective Behavior in Vertebrates , 2003 .
[11] Pascal Poncin,et al. Comparing the EthoVision 2.3 system and a new computerized multitracking prototype system to measure the swimming behavior in fry fish , 2006, Behavior research methods.
[12] Frank Dellaert,et al. MCMC-based particle filtering for tracking a variable number of interacting targets , 2005, IEEE Transactions on Pattern Analysis and Machine Intelligence.
[13] Robert Gerlai,et al. Zebra Fish: An Uncharted Behavior Genetic Model , 2003, Behavior genetics.
[14] Y. Tu,et al. Moving and staying together without a leader , 2003, cond-mat/0401257.
[15] Steven V. Viscido,et al. Individual behavior and emergent properties of fish schools: a comparison of observation and theory , 2004 .
[16] Frank Dellaert,et al. An MCMC-Based Particle Filter for Tracking Multiple Interacting Targets , 2004, ECCV.
[17] Christophe Becco,et al. Experimental evidences of a structural and dynamical transition in fish school , 2006 .
[18] Vicsek,et al. Novel type of phase transition in a system of self-driven particles. , 1995, Physical review letters.
[19] Frank Dellaert,et al. MCMC Data Association and Sparse Factorization Updating for Real Time Multitarget Tracking with Merged and Multiple Measurements , 2006, IEEE Transactions on Pattern Analysis and Machine Intelligence.
[20] Magnus Egerstedt,et al. What Are the Ants Doing? Vision-Based Tracking and Reconstruction of Control Programs , 2005, Proceedings of the 2005 IEEE International Conference on Robotics and Automation.
[21] C. Hemelrijk,et al. Density distribution and size sorting in fish schools: an individual-based model , 2005 .
[22] Guy Theraulaz,et al. Self-Organization in Biological Systems , 2001, Princeton studies in complexity.
[23] S. Guo,et al. Linking genes to brain, behavior and neurological diseases: what can we learn from zebrafish? , 2004, Genes, brain, and behavior.
[24] Tsutomu Takagi,et al. Video analysis of fish schooling behavior in finite space using a mathematical model , 2003 .
[25] Dirk Helbing,et al. Application of statistical mechanics to collective motion in biology , 1999 .
[26] Steven V. Viscido,et al. Self-Organized Fish Schools: An Examination of Emergent Properties , 2002, The Biological Bulletin.
[27] I. Couzin,et al. Collective memory and spatial sorting in animal groups. , 2002, Journal of theoretical biology.
[28] I. Couzin,et al. Effective leadership and decision-making in animal groups on the move , 2005, Nature.
[29] T. J. Roper,et al. Group decision-making in animals , 2003, Nature.
[30] Robert Gerlai,et al. Oscillations in shoal cohesion in zebrafish (Danio rerio) , 2008, Behavioural Brain Research.
[31] Noam Miller,et al. Quantification of shoaling behaviour in zebrafish (Danio rerio) , 2007, Behavioural Brain Research.