The influence of temporal predictability on express visuomotor responses
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Gerald E. Loeb | Timothy J. Carroll | Samuele Contemori | Brian D. Corneil | Guy Wallis | G. Loeb | G. Wallis | B. Corneil | T. Carroll | S. Contemori
[1] Nao Ninomiya,et al. The 10th anniversary of journal of visualization , 2007, J. Vis..
[2] Chao Gu,et al. Stimulus-Locked Responses on Human Upper Limb Muscles and Corrective Reaches Are Preferentially Evoked by Low Spatial Frequencies , 2019, eNeuro.
[3] Brian D Corneil,et al. Neuromuscular consequences of reflexive covert orienting , 2008, Nature Neuroscience.
[4] Chao Gu,et al. A Trial-by-Trial Window into Sensorimotor Transformations in the Human Motor Periphery , 2016, The Journal of Neuroscience.
[5] S. Baker,et al. Multimodal Stimuli Modulate Rapid Visual Responses during Reaching. , 2019, Journal of neurophysiology.
[6] Chih-Yang Chen,et al. Orientation and Contrast Tuning Properties and Temporal Flicker Fusion Characteristics of Primate Superior Colliculus Neurons , 2018, Front. Neural Circuits.
[7] Chao Gu,et al. Cross-species comparison of anticipatory and stimulus-driven neck muscle activity well before saccadic gaze shifts in humans and nonhuman primates. , 2015, Journal of neurophysiology.
[8] J. A. Pruszynski,et al. Rapid motor responses are appropriately tuned to the metrics of a visuospatial task. , 2008, Journal of neurophysiology.
[9] Tyler R. Peel,et al. Frontal Eye Field Inactivation Reduces Saccade Preparation in the Superior Colliculus but Does Not Alter How Preparatory Activity Relates to Saccades of a Given Latency , 2018, eNeuro.
[10] Daniel M. Wolpert,et al. Rapid Visuomotor Responses Reflect Value-Based Decisions , 2019, The Journal of Neuroscience.
[11] F E Zajac,et al. Catch Property in Single Mammalian Motor Units , 1970, Science.
[12] Chao Gu,et al. Done in 100 ms: Path-dependent visuomotor transformation in the human upper limb , 2017, bioRxiv.
[13] Jason S. Schwarz,et al. The Optic Tectum: A Structure Evolved for Stimulus Selection , 2017 .
[14] D. Northmore. VISION | Optic Tectum , 2011 .
[15] Rebecca A. Kozak,et al. Stimulus-Locked Responses on Human Upper Limb Muscles and Corrective Reaches Are Preferentially Evoked by Low Spatial Frequencies , 2019, eNeuro.
[16] Sabine Kastner,et al. Visual responses of the human superior colliculus: a high-resolution functional magnetic resonance imaging study. , 2005, Journal of neurophysiology.
[17] J. Duchateau,et al. Changes in single motor unit behaviour contribute to the increase in contraction speed after dynamic training in humans , 1998, The Journal of physiology.
[18] F. Lacquaniti,et al. Visuo-motor coordination and internal models for object interception , 2009, Experimental Brain Research.
[19] Laurent Itti,et al. Linking visual response properties in the superior colliculus to saccade behavior , 2012, The European journal of neuroscience.
[20] D. Munoz,et al. Overt Responses during Covert Orienting , 2014, Neuron.
[21] Brian D Corneil,et al. Frontal Eye Field Inactivation Diminishes Superior Colliculus Activity, But Delayed Saccadic Accumulation Governs Reaction Time Increases , 2017, The Journal of Neuroscience.
[22] Etienne Olivier,et al. Visual Responses on Neck Muscles Reveal Selective Gating that Prevents Express Saccades , 2004, Neuron.
[23] Chao Gu,et al. Done in 100 ms: path-dependent visuomotor transformation in the human upper limb. , 2018, Journal of neurophysiology.
[24] D. Munoz,et al. Neuronal Activity in Monkey Superior Colliculus Related to the Initiation of Saccadic Eye Movements , 1997, The Journal of Neuroscience.
[25] Chao Gu,et al. Active Braking of Whole-Arm Reaching Movements Provides Single-Trial Neuromuscular Measures of Movement Cancellation , 2018, The Journal of Neuroscience.
[26] J. A. Pruszynski,et al. Stimulus‐locked responses on human arm muscles reveal a rapid neural pathway linking visual input to arm motor output , 2010, The European journal of neuroscience.
[27] D H Brainard,et al. The Psychophysics Toolbox. , 1997, Spatial vision.
[28] B. Fischer,et al. Saccadic eye movements after extremely short reaction times in the monkey , 1983, Brain Research.
[29] D. Northmore. The Optic Tectum , 2009 .
[30] D. Munoz,et al. On the importance of the transient visual response in the superior colliculus , 2008, Current Opinion in Neurobiology.
[31] Jianhua Cang,et al. Visual Receptive Field Properties of Neurons in the Superficial Superior Colliculus of the Mouse , 2010, The Journal of Neuroscience.
[32] Shinya Ito,et al. The Mouse Superior Colliculus: An Emerging Model for Studying Circuit Formation and Function , 2018, Front. Neural Circuits.
[33] Joseph McIntyre,et al. Estimating time to contact and impact velocity when catching an accelerating object with the hand. , 2003, Journal of experimental psychology. Human perception and performance.
[34] J. A. Pruszynski,et al. A rapid visuomotor response on the human upper limb is selectively influenced by implicit motor learning. , 2019, Journal of neurophysiology.
[35] V Weerdesteyn,et al. Gait adjustments in response to an obstacle are faster than voluntary reactions. , 2004, Human movement science.
[36] Aaron L Cecala,et al. An Emerging Target Paradigm to Evoke Fast Visuomotor Responses on Human Upper Limb Muscles. , 2020, Journal of visualized experiments : JoVE.
[37] S. Baker,et al. Modulation of Rapid Visual Responses during Reaching by Multimodal Stimuli , 2019, bioRxiv.
[38] Stefan Everling,et al. Hand-eye coordination for rapid pointing movements , 2002, Experimental Brain Research.
[39] Brian C Coe,et al. Mechanisms of saccade suppression revealed in the anti-saccade task , 2017, Philosophical Transactions of the Royal Society B: Biological Sciences.
[40] P. Dean,et al. Event or emergency? Two response systems in the mammalian superior colliculus , 1989, Trends in Neurosciences.
[41] D P Munoz,et al. Saccadic reaction time in the monkey: advanced preparation of oculomotor programs is primarily responsible for express saccade occurrence. , 1996, Journal of neurophysiology.
[42] Kevin C. Chan,et al. BOLD responses in the superior colliculus and lateral geniculate nucleus of the rat viewing an apparent motion stimulus , 2011, NeuroImage.
[43] E. Brenner,et al. Prediction in goal-directed action. , 2019, Journal of vision.
[44] D G Pelli,et al. The VideoToolbox software for visual psychophysics: transforming numbers into movies. , 1997, Spatial vision.
[45] R. Klein,et al. Contribution of the Primate Superior Colliculus to Inhibition of Return , 2002, Journal of Cognitive Neuroscience.
[46] W. C. Hall,et al. The Superior Colliculus : New Approaches for Studying Sensorimotor Integration , 2003 .
[47] Brian D. Corneil,et al. An emerging target paradigm evokes fast visuomotor responses on human upper limb muscles , 2020, bioRxiv.
[48] Chao Gu,et al. Transient visual responses reset the phase of low‐frequency oscillations in the skeletomotor periphery , 2015, The European journal of neuroscience.
[49] B. Fischer,et al. Eye-hand-coordination in man: A reaction time study , 1986, Biological Cybernetics.
[50] George A Tsianos,et al. Muscle and Limb Mechanics. , 2017, Comprehensive Physiology.