Rapid Innate Defensive Responses of Mice to Looming Visual Stimuli

[1]  R. Masland The Neuronal Organization of the Retina , 2012, Neuron.

[2]  J. Sanes,et al.  The most numerous ganglion cell type of the mouse retina is a selective feature detector , 2012, Proceedings of the National Academy of Sciences.

[3]  G. Card,et al.  Escape behaviors in insects , 2012, Current Opinion in Neurobiology.

[4]  P. Markt,et al.  Genetic predisposition to anxiety-related behavior predicts predator odor response , 2011, Behavioural Brain Research.

[5]  T. Badea,et al.  Photoentrainment and pupillary light reflex are mediated by distinct populations of ipRGCs , 2011, Nature.

[6]  M. Ansorge,et al.  Serotonin transporter deficient mice are vulnerable to escape deficits following inescapable shocks , 2011, Genes, brain, and behavior.

[7]  W. Taylor,et al.  Synaptic inputs and timing underlying the velocity tuning of direction‐selective ganglion cells in rabbit retina , 2010, The Journal of physiology.

[8]  Tim Gollisch,et al.  Eye Smarter than Scientists Believed: Neural Computations in Circuits of the Retina , 2010, Neuron.

[9]  Rava Azeredo da Silveira,et al.  Approach sensitivity in the retina processed by a multifunctional neural circuit , 2009, Nature Neuroscience.

[10]  Hiroshi Ishikane,et al.  Identification of Retinal Ganglion Cells and Their Projections Involved in Central Transmission of Information about Upward and Downward Image Motion , 2009, PloS one.

[11]  J. Sanes,et al.  Molecular identification of a retinal cell type that responds to upward motion , 2008, Nature.

[12]  R. Apfelbach,et al.  The effects of predator odors in mammalian prey species: A review of field and laboratory studies , 2005, Neuroscience & Biobehavioral Reviews.

[13]  Wenzhi Sun,et al.  Identification of ON–OFF direction‐selective ganglion cells in the mouse retina , 2005, The Journal of physiology.

[14]  R. Douglas,et al.  Rapid quantification of adult and developing mouse spatial vision using a virtual optomotor system. , 2004, Investigative ophthalmology & visual science.

[15]  Hideki Nakagawa,et al.  Input and Output Characteristics of Collision Avoidance Behavior in the Frog Rana catesbeiana , 2003, Brain, Behavior and Evolution.

[16]  Ji-Jie Pang,et al.  Light-Evoked Excitatory and Inhibitory Synaptic Inputs to ON and OFF α Ganglion Cells in the Mouse Retina , 2003, The Journal of Neuroscience.

[17]  F. Werblin,et al.  Rapid global shifts in natural scenes block spiking in specific ganglion cell types , 2003, Nature Neuroscience.

[18]  Stephen A. Baccus,et al.  Segregation of object and background motion in the retina , 2003, Nature.

[19]  David J. Anderson,et al.  Neural Correlates of Competing Fear Behaviors Evoked by an Innately Aversive Stimulus , 2003, The Journal of Neuroscience.

[20]  M. Hascöet,et al.  The mouse light/dark box test. , 2003, European journal of pharmacology.

[21]  Wenzhi Sun,et al.  Large‐scale morphological survey of mouse retinal ganglion cells , 2002, The Journal of comparative neurology.

[22]  Brian J. Wiltgen,et al.  Sex differences, context preexposure, and the immediate shock deficit in Pavlovian context conditioning with mice. , 2001, Behavioral neuroscience.

[23]  D. Blanchard,et al.  Defensive behaviors in wild and laboratory (Swiss) mice: the mouse defense test battery , 1998, Physiology & Behavior.

[24]  G. Griebel,et al.  Evidence that the Behaviors in the Mouse Defense Test Battery Relate to Different Emotional States: A Factor Analytic Study , 1996, Physiology & Behavior.

[25]  M. Fanselow Neural organization of the defensive behavior system responsible for fear , 1994, Psychonomic bulletin & review.

[26]  P Redgrave,et al.  Movements resembling orientation or avoidance elicited by electrical stimulation of the superior colliculus in rats , 1986, The Journal of neuroscience : the official journal of the Society for Neuroscience.

[27]  C. W. Oyster,et al.  The analysis of image motion by the rabbit retina , 1968, The Journal of physiology.

[28]  M. Fox The visual cliff test for the study of visual depth perception in the mouse. , 1965, Animal behaviour.