A cortico-cortical mechanism mediating object-driven grasp in humans.

scientific article

Warning: Trying to access array offset on value of type null in /home/httpd/vhosts/renenyffenegger.ch/opendata.renenyffenegger.ch/Wikimedia/Wikidata/entity/main.php on line 382 Warning: Trying to access array offset on value of type null in /home/httpd/vhosts/renenyffenegger.ch/opendata.renenyffenegger.ch/Wikimedia/Wikidata/entity/main.php on line 382 Warning: foreach() argument must be of type array|object, null given in /home/httpd/vhosts/renenyffenegger.ch/opendata.renenyffenegger.ch/Wikimedia/Wikidata/entity/main.php on line 383

Reverse relations

cites work (P2860)
Q53652253A low-cost visual occlusion device.
Q89619780Action Observation and Effector Independency
Q52581430Age-related changes in late I-waves influence motor cortex plasticity induction in older adults.
Q47162214An Emotion-Enriched Context Influences the Effect of Action Observation on Cortical Excitability
Q34975580Anticipating the course of an action: evidence from corticospinal excitability.
Q37198864Basal ganglia mechanisms underlying precision grip force control
Q41892128Causal connectivity between the human anterior intraparietal area and premotor cortex during grasp
Q39238862Classification of Anticipatory Signals for Grasp and Release from Surface Electromyography.
Q39639636Compensatory plasticity in the action observation network: virtual lesions of STS enhance anticipatory simulation of seen actions
Q35785669Control of interjoint coordination during the swing phase of normal gait at different speeds.
Q30440118Corticospinal excitability preceding the grasping of emotion-laden stimuli
Q33708279Corticospinal excitability underlying digit force planning for grasping in humans.
Q34473880Corticospinal facilitation during observation of graspable objects: a transcranial magnetic stimulation study
Q48167490Corticospinal influences on the distal muscles of the hand in conditions of inertial loading
Q48487006Distinct Corticocortical Contributions to Human Precision and Power Grip.
Q48256217Excitability of human motor cortex inputs prior to grasp
Q45890185Goal or movement? Action representation within the primary motor cortex
Q41606955Grasp-specific motor resonance is influenced by the visibility of the observed actor
Q41193886How does transcranial magnetic stimulation modify neuronal activity in the brain? Implications for studies of cognition
Q36794386Impaired Organization of Paired-Pulse TMS-Induced I-Waves After Human Spinal Cord Injury.
Q33681255Maintaining rotational equilibrium during object manipulation: linear behavior of a highly non-linear system
Q34678767Observing Grasping Actions Directed to Emotion-Laden Objects: Effects upon Corticospinal Excitability
Q46899812On-line control of grasping actions: object-specific motor facilitation requires sustained visual input.
Q35032175One's motor performance predictably modulates the understanding of others' actions through adaptation of premotor visuo-motor neurons
Q35776369Parietofrontal integrity determines neural modulation associated with grasping imagery after stroke
Q51855003Planning of visually guided reach-to-grasp movements: inference from reaction time and contingent negative variation (CNV).
Q55393871Reach-To-Grasp Movements: A Multimodal Techniques Study.
Q46651768Selective modulation of interactions between ventral premotor cortex and primary motor cortex during precision grasping in humans
Q44548765Selectivity for grip type and action goal in macaque inferior parietal and ventral premotor grasping neurons.
Q35650326Subcortical contribution to late TMS-induced I-waves in intact humans
Q30454730The DIVA model: A neural theory of speech acquisition and production
Q30999963The neuroscience of grasping
Q21558413Transcranial Magnetic Mapping of the Short-Latency Modulations of Corticospinal Activity from the Ipsilateral Hemisphere during Rest
Q30464333Using TMS to study the role of the articulatory motor system in speech perception
Q43065673Ventral premotor to primary motor cortical interactions during object-driven grasp in humans

Search more.