Similar scaling of contralateral and ipsilateral cortical responses during graded unimanual force generation
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G. Derosière | F. Alexandre | N. Bourdillon | K. Mandrick | T. E. Ward | S. Perrey | T. Ward | S. Perrey | K. Mandrick | N. Bourdillon | G. Derosière | Gérard Derosière | F. Alexandre
[1] M. Hallett,et al. Effects of transcranial magnetic stimulation on ipsilateral muscles , 1991, Neurology.
[2] J. Liepert,et al. Inhibition of ipsilateral motor cortex during phasic generation of low force , 2001, Clinical Neurophysiology.
[3] E. Potchen,et al. Force of Voluntary Exercise does not Affect Sensorimotor Cortex Activation as Detected by Functional MRI at 1.5 T , 1996, NMR in biomedicine.
[4] R. Kawashima,et al. Changes in regional cerebral blood flow during self-paced arm and finger movements. A PET study , 1996, Brain Research.
[5] Reiko Kawagoe,et al. Influence of skin blood flow on near-infrared spectroscopy signals measured on the forehead during a verbal fluency task , 2011, NeuroImage.
[6] John H. Martin,et al. Motor Cortex Bilateral Motor Representation Depends on Subcortical and Interhemispheric Interactions , 2009, The Journal of Neuroscience.
[7] Marco Ferrari,et al. Relationship between handgrip sustained submaximal exercise and prefrontal cortex oxygenation. , 2006, Advances in experimental medicine and biology.
[8] H. Flor,et al. Non-invasive functional mapping of the human motor cortex using near-infrared spectroscopy. , 1996, Neuroreport.
[9] Stéphane Perrey,et al. Relationship between submaximal handgrip muscle force and NIRS-measured motor cortical activation. , 2012, Advances in experimental medicine and biology.
[10] P. Strick,et al. Motor areas in the frontal lobe of the primate , 2002, Physiology & Behavior.
[11] Jing Z. Liu,et al. Relationship between muscle output and functional MRI-measured brain activation , 2001, Experimental Brain Research.
[12] Inge Zijdewind,et al. Relation between muscle and brain activity during isometric contractions of the first dorsal interosseus muscle , 2008, Human brain mapping.
[13] M Hallett,et al. Dissociation of the pathways mediating ipsilateral and contralateral motor‐evoked potentials in human hand and arm muscles , 1999, The Journal of physiology.
[14] W. Prinz,et al. Neural and behavioral correlates of intentional actions , 2011, Neuropsychologia.
[15] Guideline Thirteen: Guidelines for Standard Electrode Position Nomenclature , 1994, Journal of clinical neurophysiology : official publication of the American Electroencephalographic Society.
[16] David A. Boas,et al. Short separation channel location impacts the performance of short channel regression in NIRS , 2012, NeuroImage.
[17] R. C. Oldfield. The assessment and analysis of handedness: the Edinburgh inventory. , 1971, Neuropsychologia.
[18] Davide Contini,et al. Deep and surface hemodynamic signal from functional time resolved transcranial near infrared spectroscopy compared to skin flowmotion , 2012, Comput. Biol. Medicine.
[19] R. Buxton,et al. A Model for the Coupling between Cerebral Blood Flow and Oxygen Metabolism during Neural Stimulation , 1997, Journal of cerebral blood flow and metabolism : official journal of the International Society of Cerebral Blood Flow and Metabolism.
[20] A Daffertshofer,et al. Differential modulations of ipsilateral and contralateral beta (de)synchronization during unimanual force production , 2012, The European journal of neuroscience.
[21] M. Schwab,et al. Cells of origin, course, and termination patterns of the ventral, uncrossed component of the mature rat corticospinal tract , 1997, The Journal of comparative neurology.
[22] D. Boas,et al. HomER: a review of time-series analysis methods for near-infrared spectroscopy of the brain. , 2009, Applied optics.
[23] E. Fetz,et al. Functional classes of primate corticomotoneuronal cells and their relation to active force. , 1980, Journal of neurophysiology.
[24] D. Delpy,et al. Quantification of adult cerebral hemodynamics by near-infrared spectroscopy. , 1994, Journal of applied physiology.
[25] Jing Z. Liu,et al. Human brain activation during sustained and intermittent submaximal fatigue muscle contractions: an FMRI study. , 2003, Journal of neurophysiology.
[26] P M Matthews,et al. The motor cortex shows adaptive functional changes to brain injury from multiple sclerosis , 2000, Annals of neurology.
[27] C Neuper,et al. Spatio-temporal differences in brain oxygenation between movement execution and imagery: a multichannel near-infrared spectroscopy study. , 2008, International journal of psychophysiology : official journal of the International Organization of Psychophysiology.
[28] A. Kleinschmidt,et al. Simultaneous Recording of Cerebral Blood Oxygenation Changes during Human Brain Activation by Magnetic Resonance Imaging and Near-Infrared Spectroscopy , 1996, Journal of cerebral blood flow and metabolism : official journal of the International Society of Cerebral Blood Flow and Metabolism.
[29] K. Willmes,et al. On the Functional Neuroanatomy of Intrinsic and Phasic Alertness , 2001, NeuroImage.
[30] M. Hallett,et al. Cortical motor representation of the ipsilateral hand and arm , 2004, Experimental Brain Research.
[31] R. Johansson,et al. Cortical activity in precision- versus power-grip tasks: an fMRI study. , 2000, Journal of neurophysiology.
[32] B. Rosen,et al. Motor cortex activation is related to force of squeezing , 2002, Human brain mapping.
[33] R. J. Ilmoniemi,et al. Bilateral changes in excitability of sensorimotor cortices during unilateral movement: Combined electroencephalographic and transcranial magnetic stimulation study , 2008, Neuroscience.
[34] A. Villringer,et al. Cerebral oxygenation changes in response to motor stimulation. , 1996, Journal of applied physiology.
[35] A. Villringer,et al. Spontaneous Low Frequency Oscillations of Cerebral Hemodynamics and Metabolism in Human Adults , 2000, NeuroImage.
[36] Hartwig R. Siebner,et al. Brain activity is similar during precision and power gripping with light force: An fMRI study , 2008, NeuroImage.
[37] J. Tanji,et al. Neuronal activity in cortical motor areas related to ipsilateral, contralateral, and bilateral digit movements of the monkey. , 1988, Journal of neurophysiology.
[38] J. Fischer,et al. The Prehensile Movements of the Human Hand , 2014 .
[39] A. Georgopoulos,et al. The motor cortex and the coding of force. , 1992, Science.
[40] G. Thickbroom,et al. Isometric force-related activity in sensorimotor cortex measured with functional MRI , 1998, Experimental Brain Research.
[41] L A Duncan,et al. Near infrared spectroscopy , 1996, Anaesthesia.
[42] Masako Okamoto,et al. Multimodal assessment of cortical activation during apple peeling by NIRS and fMRI , 2004, NeuroImage.
[43] J. Detre,et al. Diffuse optical measurement of blood flow, blood oxygenation, and metabolism in a human brain during sensorimotor cortex activation. , 2004, Optics letters.
[44] R. Ivry,et al. Ipsilateral motor cortex activity during unimanual hand movements relates to task complexity. , 2005, Journal of neurophysiology.
[45] Denis Mottet,et al. The role of cocontraction in the impairment of movement accuracy with fatigue , 2008, Experimental Brain Research.
[46] S. Arridge,et al. Estimation of optical pathlength through tissue from direct time of flight measurement , 1988 .
[47] Stéphane Perrey,et al. Non-invasive NIR spectroscopy of human brain function during exercise. , 2008, Methods.
[48] P. Bawa,et al. Bilateral responses of upper limb muscles to transcranial magnetic stimulation in human subjects , 2004, Experimental Brain Research.
[49] M. Hallett,et al. Force level modulates human cortical oscillatory activities , 1999, Neuroscience Letters.
[50] B. Bigland-ritchie,et al. Linear and non-linear surface EMG/force relationships in human muscles. An anatomical/functional argument for the existence of both. , 1983, American journal of physical medicine.
[51] M Davare,et al. Role of the ipsilateral primary motor cortex in controlling the timing of hand muscle recruitment. , 2006, Cerebral cortex.
[52] G. Pfurtscheller,et al. Functional dissociation of lower and upper frequency mu rhythms in relation to voluntary limb movement , 2000, Clinical Neurophysiology.
[53] Heidrun Wabnitz,et al. The physiological origin of task-evoked systemic artefacts in functional near infrared spectroscopy , 2012, NeuroImage.
[54] Masako Iwadate,et al. Quantification of delayed oxygenation in ipsilateral primary motor cortex compared with contralateral side during a unimanual dominant-hand motor task using near-infrared spectroscopy , 2008, Brain Research.
[55] Rolf B. Saager,et al. Two-detector Corrected Near Infrared Spectroscopy (C-NIRS) detects hemodynamic activation responses more robustly than single-detector NIRS , 2011, NeuroImage.
[56] E. Miller,et al. An integrative theory of prefrontal cortex function. , 2001, Annual review of neuroscience.
[57] M. Ferrari,et al. Human motor-cortex oxygenation changes induced by cyclic coupled movements of hand and foot , 1999, Experimental Brain Research.
[58] M. Hallett,et al. The functional neuroanatomy of simple and complex sequential finger movements: a PET study. , 1998, Brain : a journal of neurology.