Importance of precentral motor regions in human kinesthesia: A single case study

scientific article published on 08 September 2010

Importance of precentral motor regions in human kinesthesia: A single case study is …
instance of (P31):
scholarly articleQ13442814

External links are
P356DOI10.1080/13554794.2010.498428
P698PubMed publication ID20830645

P50authorYutaka OouchidaQ42858571
Riki MatsumotoQ48763407
P2093author name stringEiichi Naito
Nobuhiro Hagura
Takashi Hanakawa
Hidekazu Tomimoto
P2860cites workLocalization in somatic sensory and motor areas of human cerebral cortex as determined by direct recording of evoked potentials and electrical stimulationQ28245686
SOMATIC MOTOR AND SENSORY REPRESENTATION IN THE CEREBRAL CORTEX OF MAN AS STUDIED BY ELECTRICAL STIMULATIONQ29029673
Finger and face representations in the ipsilateral precentral motor areas in humansQ30500768
Investigating directed cortical interactions in time-resolved fMRI data using vector autoregressive modeling and Granger causality mappingQ30887507
Reorganization of remote cortical regions after ischemic brain injury: a potential substrate for stroke recoveryQ34202632
Manual motor performance in a deafferented manQ34253552
Neural substrates for the effects of rehabilitative training on motor recovery after ischemic infarctQ34382678
Cutaneous receptors contribute to kinesthesia at the index finger, elbow, and knee.Q34421553
Sensing limb movements in the motor cortex: how humans sense limb movementQ35677234
Mechanisms for recovery of motor function following cortical damageQ36644636
Responses to passive movement of receptors in joint, skin and muscle of the human handQ39287494
Short-latency peripheral inputs to thalamic neurones projecting to the motor cortex in the monkeyQ39682831
The responses of human muscle spindle endings to vibration of non-contracting musclesQ39789391
Proprioceptive illusions induced by muscle vibration: contribution by muscle spindles to perception?Q43476203
Stimulus-response profile during single-pulse transcranial magnetic stimulation to the primary motor cortex.Q46113890
Activity in the posterior parietal cortex mediates visual dominance over kinesthesiaQ48124055
Human limb-specific and non-limb-specific brain representations during kinesthetic illusory movements of the upper and lower extremities.Q48145016
I feel my hand moving: a new role of the primary motor cortex in somatic perception of limb movementQ48432121
Sensory processing during kinesthetic aftereffect following illusory hand movement elicited by tendon vibrationQ48442777
Ago-antagonist muscle spindle inputs contribute together to joint movement coding in man.Q48447512
Cortical projection of group I muscle afferents to areas 2, 3a, and the vestibular field in the rhesus monkeyQ48642678
The relevance of sensory input for the cerebellar control of movementsQ48808949
Vicarious function within the human primary motor cortex? A longitudinal fMRI stroke studyQ49022889
Kinaesthetic role of muscle afferents in man, studied by tendon vibration and microneurographyQ49114418
Responses of monkey precentral neurones to passive movements and phasic muscle stretch: relevance to man.Q49128770
The contribution of muscle afferents to kinaesthesia shown by vibration induced illusions of movement and by the effects of paralysing joint afferents.Q51114359
Cortical activation changes associated with motor recovery in patients with precentral knob infarct.Q53641066
SENSORY DISTURBANCES FROM CEREBRAL LESIONSQ56623668
Extrastriate body area in human occipital cortex responds to the performance of motor actionsQ57381904
Human Superior Parietal Lobule Is Involved in Somatic Perception of Bimanual Interaction With an External ObjectQ57515133
Dominance of the Right Hemisphere and Role of Area 2 in Human KinesthesiaQ57515561
Hierarchical Processing of Tactile Shape in the Human BrainQ57515786
P433issue2
P304page(s)133-147
P577publication date2010-09-08
P1433published inNeurocaseQ7002159
P1476titleImportance of precentral motor regions in human kinesthesia: a single case study
P478volume17