Neurons in area 5 of the posterior parietal cortex in the cat contribute to interlimb coordination during visually guided locomotion: a role in working memory.
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Deficits in memory-guided limb movements impair obstacle avoidance locomotion in Alzheimer's disease mouse modelMotor deficits on a ladder rung task in male and female adolescent and adult CGG knock-in miceChondroitinase ABC promotes recovery of adaptive limb movements and enhances axonal growth caudal to a spinal hemisection.Adaptation to a cortex-controlled robot attached at the pelvis and engaged during locomotion in rats.Posture and locomotion coupling: a target for rehabilitation interventions in persons with Parkinson's disease.Human-Robot Interaction: Does Robotic Guidance Force Affect Gait-Related Brain Dynamics during Robot-Assisted Treadmill Walking?Signals from the ventrolateral thalamus to the motor cortex during locomotion.EphA4-mediated ipsilateral corticospinal tract misprojections are necessary for bilateral voluntary movements but not bilateral stereotypic locomotion.Neurophysiology of gait: from the spinal cord to the frontal lobe.On the challenges and mechanisms of embodied decisions.Functional Neuroanatomy for Posture and Gait Control.Sensorimotor integration of vision and proprioception for obstacle crossing in ambulatory individuals with spinal cord injury.Electrocortical activity distinguishes between uphill and level walking in humans.Leg mechanics contribute to establishing swing phase trajectories during memory-guided stepping movements in walking cats: a computational analysisEnhancing memory of stair height by the motor experience of stepping.Reversible Cooling-induced Deactivations to Study Cortical Contributions to Obstacle Memory in the Walking Cat.Failures in adaptive locomotion: trial-and-error exploration to determine adequate foot elevation over obstacles.Contributions of Parietal Cortex to the Working Memory of an Obstacle Acquired Visually or Tactilely in the Locomoting Cat.Contribution of cells in the posterior parietal cortex to the planning of visually guided locomotion in the cat: effects of temporary visual interruption.Memory-Guided Stumbling Correction in the Hindlimb of Quadrupeds Relies on Parietal Area 5.Memory-guided obstacle crossing: more failures were observed for the trail limb versus lead limb.Stability of gait and interlimb coordination in older adults.Neural predictors of gait stability when walking freely in the real-world.Neural substrates involved in the control of posture
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P2860
Neurons in area 5 of the posterior parietal cortex in the cat contribute to interlimb coordination during visually guided locomotion: a role in working memory.
description
2010 nî lūn-bûn
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2010年の論文
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2010年学术文章
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2010年学术文章
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2010年学术文章
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2010年学术文章
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name
Neurons in area 5 of the poste ...... ion: a role in working memory.
@en
Neurons in area 5 of the poste ...... ion: a role in working memory.
@nl
type
label
Neurons in area 5 of the poste ...... ion: a role in working memory.
@en
Neurons in area 5 of the poste ...... ion: a role in working memory.
@nl
prefLabel
Neurons in area 5 of the poste ...... ion: a role in working memory.
@en
Neurons in area 5 of the poste ...... ion: a role in working memory.
@nl
P2093
P2860
P356
P1476
Neurons in area 5 of the poste ...... ion: a role in working memory.
@en
P2093
Jacques-Etienne Andujar
Keir Pearson
Kim Lajoie
Trevor Drew
P2860
P304
P356
10.1152/JN.01100.2009
P407
P577
2010-04-01T00:00:00Z