Publications

PubMedGoogle ScholarBibTeX


Ostry D, Darainy M, Mattar A, Wong J, Gribble PL (2010) Somatosensory Plasticity and Motor Learning. J. Neurosci., in press
[pdf-preprint]

Cothros N, Wong J, Gribble PL (2009) Visual Cues Signaling Object Grasp Reduce Interference in Motor Learning. J Neurophysiol. 102(4), 2112-20
[pdf]

Malfait N, Valyear KF, Culham JC, Anton JL, Brown LE, Gribble PL (2009) fMRI Activation during Observation of Others’ Reach Errors. J Cogn Neurosci 22(7), 1493-1503. PMID: 19580392
[pdf]

Wong J, Wilson ET, Malfait N, Gribble PL (2009) Limb Stiffness is Modulated with Spatial Accuracy Requirements During Movement in the Absence of Destabilizing Forces. J Neurophysiol. 101, 1542-49. PMID: 19144739
[pdf]

Wong J, Wilson ET, Malfait N, Gribble PL (2009) The Influence of Visual Perturbations on the Neural Control of Limb Stiffness. J Neurophysiol. 101, 246-57. PMID: 18667545
[pdf]

Kistemaker DA, Faber H, Beek PJ (2008) Catching fly balls: A simulation study of the Chapman strategy. Hum Mov Sci. (in press). PMID: 19110332

Brown LE, Wilson ET, Gribble PL (2009) Repetitive Transcranial Magnetic Stimulation to the Primary Motor Cortex Interferes with Motor Learning by Observing. J Cogn Neurosci. 21(5): 1013-22. PMID: 18702578
[pdf]

Cothros N, Wong J, Gribble PL (2008) Distinct haptic cues do not reduce interference when learning to reach in multiple force fields. PLoS ONE. 3 (4), e1990. PMID: 18431477
[pdf]

Malfait N, Henriques DY, Gribble PL (2008) Shape distortion produced by isolated mismatch between vision and proprioception. J Neurophysiol. 99 (1), 231-43. PMID: 17977930
[pdf]

Brown LE, Wilson ET, Goodale MA, Gribble PL (2007) Motor force field learning influences visual processing of target motion. J Neurosci. 27 (37), 9975-83. PMID: 17855611
[pdf]

Cothros N, Köhler S, Dickie EW, Mirsattari SM, Gribble PL (2006) Proactive interference as a result of persisting neural representations of previously learned motor skills in primary motor cortex. J Cogn Neurosci. 18 (12), 2167-76. PMID: 17129198
[pdf]

Cothros N, Wong JD, Gribble PL (2006) Are there distinct neural representations of object and limb dynamics? Exp Brain Res. 173 (4), 689-97. PMID: 16525798
[pdf]

Mattar AA, Gribble PL (2005) Motor learning by observing. Neuron. 46 (1), 153-60. PMID: 15820701
[pdf]

Debicki DB, Gribble PL (2005) Persistence of inter-joint coupling during single-joint elbow flexions after shoulder fixation. Exp Brain Res. 163 (2), 252-7. PMID: 15754174
[pdf]

Malfait N, Gribble PL, Ostry DJ (2005) Generalization of motor learning based on multiple field exposures and local adaptation. J Neurophysiol. 93 (6), 3327-38. PMID: 15659531
[pdf]

Darainy M, Malfait N, Gribble PL, Towhidkhah F, Ostry DJ (2004) Learning to control arm stiffness under static conditions. J Neurophysiol. 92 (6), 3344-50. PMID: 15282262
[pdf]

Debicki DB, Gribble PL (2004) Inter-joint coupling strategy during adaptation to novel viscous loads in human arm movement. J Neurophysiol. 92 (2), 754-65. PMID: 15056688
[pdf]

Debicki DB, Gribble PL, Watts S, Hore J (2004) Kinematics of wrist joint flexion in overarm throws made by skilled subjects. Exp Brain Res. 154 (3), 382-94. PMID: 14598003
[pdf]

Gribble PL, Mullin LI, Cothros N, Mattar A (2003) Role of cocontraction in arm movement accuracy. J Neurophysiol. 89 (5), 2396-405. PMID: 12611935
[pdf]

Gribble PL, Everling S, Ford K, Mattar A (2002) Hand-eye coordination for rapid pointing movements. Arm movement direction and distance are specified prior to saccade onset. Exp Brain Res. 145 (3), 372-82. PMID: 12136387
[pdf]

Gribble PL, Scott SH (2002) Overlap of internal models in motor cortex for mechanical loads during reaching. Nature. 417 (6892), 938-41. PMID: 12087402
[pdf]

Gribble PL, Scott SH (2002) Method for assessing directional characteristics of non-uniformly sampled neural activity. J Neurosci Methods. 113 (2), 187-97. PMID: 11772440
[pdf]

Scott SH, Gribble PL, Graham KM, Cabel DW (2001) Dissociation between hand motion and population vectors from neural activity in motor cortex. Nature. 413 (6852), 161-5. PMID: 11557980
[pdf]

Shiller DM, Ostry DJ, Gribble PL, Laboissière R (2001) Compensation for the effects of head acceleration on jaw movement in speech. J Neurosci. 21 (16), 6447-56. PMID: 11487669
[pdf]

Gribble PL, Ostry DJ (2000) Compensation for loads during arm movements using equilibrium-point control. Exp Brain Res. 135 (4), 474-82. PMID: 11156311
[pdf]

Gribble PL, Ostry DJ (1999) Compensation for interaction torques during single- and multijoint limb movement. J Neurophysiol. 82 (5), 2310-26. PMID: 10561408
[pdf]

Shiller DM, Ostry DJ, Gribble PL (1999) Effects of gravitational load on jaw movements in speech. J Neurosci. 19 (20), 9073-80. PMID: 10516324
[pdf]

Gribble PL, Ostry DJ (1998) Independent coactivation of shoulder and elbow muscles. Exp Brain Res. 123 (3), 355-60. PMID: 9860276
[pdf]

Feldman AG, Ostry DJ, Levin MF, Gribble PL, Mitnitski AB (1998) Recent tests of the equilibrium-point hypothesis (lambda model). Motor Control. 2 (3), 189-205. PMID: 9644289
[pdf]

Gribble PL, Ostry DJ, Sanguineti V, Laboissière R (1998) Are complex control signals required for human arm movement? J Neurophysiol. 79 (3), 1409-24. PMID: 9497421
[pdf]

Ostry DJ, Vatikiotis-Bateson E, Gribble PL (1997) An examination of the degrees of freedom of human jaw motion in speech and mastication. J Speech Lang Hear Res. 40 (6), 1341-51. PMID: 9430754
[pdf]

Ostry DJ, Gribble PL, Levin MF, Feldman AG (1997) Phasic and tonic stretch reflexes in muscles with few muscle spindles: human jaw-opener muscles. Exp Brain Res. 116 (2), 299-308. PMID: 9348128
[pdf]

Gribble PL, Ostry DJ (1996) Origins of the power law relation between movement velocity and curvature: modeling the effects of muscle mechanics and limb dynamics. J Neurophysiol. 76 (5), 2853-60. PMID: 8930238
[pdf]

Munhall KG, Gribble P, Sacco L, Ward M (1996) Temporal constraints on the McGurk effect. Percept Psychophys. 58 (3), 351-62. PMID: 8935896
[pdf]

Ostry DJ, Gribble PL, Gracco VL (1996) Coarticulation of jaw movements in speech production: is context sensitivity in speech kinematics centrally planned? J Neurosci. 16 (4), 1570-9. PMID: 8778306
[pdf]