Implicit and explicit components of dual adaptation to visuomotor rotations
Tài liệu tham khảo
Abeele, 2001, Mechanisms for sensorimotor adaptation to rotated visual input, Experimental Brain Research, 139, 248, 10.1007/s002210100768
Abeele, 2001, Sensorimotor adaptation to rotated visual input: Different mechanisms for small versus large rotations, Experimental Brain Research, 140, 407, 10.1007/s002210100846
Abeele, 2003, Transfer of sensorimotor adaptation between different movement categories, Experimental Brain Research, 148, 128, 10.1007/s00221-002-1317-0
Adamo, 2007, Age-related differences in upper limb proprioceptive acuity, Perceptual and Motor Skills, 104, 1297, 10.2466/pms.104.4.1297-1309
Amthauer, 1953
Bock, 1992, Adaptation of aimed arm movements to sensorimotor discordance: Evidence for direction-independent gain control, Behavioural Brain Research, 51, 41, 10.1016/S0166-4328(05)80310-9
Bock, 2005, Components of sensorimotor adaptation in young and elderly subjects, Experimental Brain Research, 160, 259, 10.1007/s00221-004-2133-5
Bock, 1997, Visuomotor adaptation: Evidence for a distributed amplitude control system, Behavioral Brain Research, 89, 267, 10.1016/S0166-4328(97)00069-7
Bock, 2005, Concurrent adaptations of left and right arms to opposite visual distortions, Experimental Brain Research, 162, 513, 10.1007/s00221-005-2222-0
Buch, 2003, Visuomotor adaptation in normal aging, Learning and Memory, 10, 55, 10.1101/lm.50303
Cunningham, 1989, Aiming error under transformed spatial mappings suggests a structure for visual-motor maps, Journal of Experimental Psychology: Human Perception and Performance, 15, 493, 10.1037/0096-1523.15.3.493
Galea, 2006, Concurrent adaptation to opposing visual displacements during an alternating movement, Experimental Brain Research, 175, 676, 10.1007/s00221-006-0585-5
Gandolfo, 1996, Motor learning by field approximation, Proceedings of the National Academy of Science USA, 93, 3843, 10.1073/pnas.93.9.3843
Gharamani, 1997, Modular decomposition in visuomotor learning, Nature, 386, 392, 10.1038/386392a0
Greenhouse, 1959, On methods in the analysis of profile data, Psychometrika, 24, 95, 10.1007/BF02289823
Hegele, 2010, Adaptation to a direction-dependent gain in the young and elderly, Psychological Research, 21, 21, 10.1007/s00426-008-0221-z
von Helmholtz, 1866
Heuer, 1983
Heuer, 2007, Learning new visuomotor gains at early and late working age, Ergonomics, 90, 979, 10.1080/00140130701240828
Heuer, 2008, Adaptation to visuomotor rotations in younger and older adults, Psychology and Aging, 23, 190, 10.1037/0882-7974.23.1.190
Heuer, 2008, Adaptation to a nonlinear visuomotor amplitude transformation with continuous and terminal visual feedback, Journal of Motor Behavior, 40, 368, 10.3200/JMBR.40.5.368-379
Heuer, 2009, Adjustment to a complex visuo-motor transformation at early and late working age, Ergonomics, 52, 1039, 10.1080/00140130902912795
Hinder, 2008, The efficacy of color cues in facilitating adaptation to opposing visuomotor rotations, Experimental Brain Research, 191, 143, 10.1007/s00221-008-1513-7
Hwang, 2003, A gain-field encoding of limb position and velocity in the internal model of arm dynamics, PLoS Biology, 1, 209, 10.1371/journal.pbio.0000025
Imamizu, 1995, The locus of visual-motor learning at the task or manipulator level: Implications from intermanual transfer, Journal of Experimental Psychology: Human Perception and Performance, 21, 719, 10.1037/0096-1523.21.4.719
Inoue, 2001, Age-related reduction of extrastriatal dopamine D2 receptors measured by PET, Life Sciences, 69, 1079, 10.1016/S0024-3205(01)01205-X
Ishihara, 2005
Ito, 2008, Control activities by internal models in the cerebellum, Nature Review Neuroscience, 9, 304, 10.1038/nrn2332
Kaasinen, 2005, Age-related dopamine D2/D3 receptor loss in extrastriatal regions of the human brain, Neurobiology of Aging, 21, 683, 10.1016/S0197-4580(00)00149-4
Karniel, 2002, Does the motor control system use multiple models and context switching to cope with a variable environment?, Experimental Brain Research, 143, 520, 10.1007/s00221-002-1054-4
Krakauer, 2000, Learning of visuomotor transformations for vectorial planning of reaching trajectories, Journal of Neuroscience, 20, 8916, 10.1523/JNEUROSCI.20-23-08916.2000
Magescas, 2006, Automatic drive of limb motor plasticity, Journal of Cognitive Neuroscience, 18, 75, 10.1162/089892906775250058
Malfait, 2004, Is interlimb transfer of force-field adaptation a cognitive response to the sudden introduction of load?, Journal of Neuroscience, 24, 8084, 10.1523/JNEUROSCI.1742-04.2004
Mazzoni, 2006, Unconscious versus conscious control of motor learning, Journal of Neuroscience, 26, 3642, 10.1523/JNEUROSCI.5317-05.2006
McNay, 1998, Deficit in learning of a motor skill requiring strategy, but not of perceptuomotor recalibration, with aging, Learning & Memory, 4, 411, 10.1101/lm.4.5.411
Michel, 2007, Enhancing visuomotor adaptation by reducing error signals: Single-step (aware) versus multiple-step (unaware) exposure to wedge prisms, Journal of Cognitive Neuroscience, 19, 341, 10.1162/jocn.2007.19.2.341
Mikaelian, 1974, Specialized adaptation to displaced vision, Perception, 3, 135, 10.1068/p030135
Osu, 2004, Random presentation enables subjects to adapt to two opposing forces on the hand, Nature Neuroscience, 7, 314, 10.1038/nn0304-314b
Pennel, 2002, Frame of reference and adaptation to directional bias in a video-controlled reaching task, Ergonomics, 45, 1047, 10.1080/00140130210166906
Prablanc, 1975, Adaptation of the two arms to opposite prism displacements, Quarterly Journal of Experimental Psychology, 27, 667, 10.1080/14640747508400527
Redding, 1996, Adaptive spatial realignment and strategic control, Journal of Experimental Psychology: Human Perception and Performance, 22, 379, 10.1037/0096-1523.22.2.379
Rose, M., Haider, H., & Büchel, C. (in press). The emergence of explicit memory during learning. Cerebral Cortex. doi:10.1093/cercor/bhq025.
Salthouse, 2006, Mental exercise and mental aging: Evaluation of the “use it or lose it” hypothesis, Perspectives on Psychological Science, 1, 68, 10.1111/j.1745-6916.2006.00005.x
Schoppe, 1974, Das MLS-Gerät. Ein neuer Testapparat zur Messung feinmotorischer Leistungen [the MLS box: A new test apparatus to measure fine motor performance], Diagnostica, 20, 43
Shadmehr, 1994, Adaptive representation of dynamics during learning of a motor task, Journal of Neuroscience, 14, 3208, 10.1523/JNEUROSCI.14-05-03208.1994
Stratton, 1896, Some preliminary experiments on vision without inversion of the retinal image, Psychological Review, 3, 611, 10.1037/h0072918
Sülzenbrück, S., Hegele, M., Heuer, H., & Rinkenauer, G. (in press). Generalized slowing is not that general in older adults: Evidence from a tracing task. Occupational Ergonomics.
Sülzenbrück, 2009, Functional independence of explicit and implicit motor adjustments, Consciousness and Cognition, 18, 145, 10.1016/j.concog.2008.12.001
Sun, 2005, The interaction of the explicit and implicit in skill learning: A dual-process approach, Psychological Review, 112, 159, 10.1037/0033-295X.112.1.159
Tewes, 1991
Vercruyssen, 1997, Movement control and speed of behavior, 55
Volkow, 1998, Association between decline in brain dopamine activity with age and cognitive and motor impairment in healthy individuals, American Journal of Psychiatry, 155, 344
Wada, 2003, Acquisition and contextual switching of multiple internal models for different viscous force fields, Neuroscience Research, 46, 319, 10.1016/S0168-0102(03)00094-4
Wang, 2003, Mechanisms underlying interlimb transfer of visuomotor rotations, Experimental Brain Research, 149, 520, 10.1007/s00221-003-1392-x
Welch, 1978
Welch, 1993, Alternating prism exposure causes dual adaptation and generalization to a novel displacement, Perception & Psychophysics, 54, 195, 10.3758/BF03211756
West, 1996, An application of prefrontal cortex function theory to cognitive aging, Psychological Bulletin, 120, 272, 10.1037/0033-2909.120.2.272
Willingham, 1989, On the development of procedural knowledge, Journal of Experimental Psychology: Learning, Memory, and Cognition, 15, 1047, 10.1037/0278-7393.15.6.1047
Wolpert, 1998, Multiple paired forward and inverse models for motor control, Neural Networks, 11, 1317, 10.1016/S0893-6080(98)00066-5
Woolley, 2007, Dual adaptation to two opposing visuomotor rotations when each is associated with different regions of workspace, Experimental Brain Research, 179, 155, 10.1007/s00221-006-0778-y