scholarly article | Q13442814 |
P356 | DOI | 10.1111/JMP.12276 |
P698 | PubMed publication ID | 28543057 |
P50 | author | Jia-Sheng Rao | Q51153970 |
Xiao-Guang Li | Q85481920 | ||
P2093 | author name string | Wei Song | |
Xia Zhou | |||
Wen Zhao | |||
Can Zhao | |||
Peng-Yu Tian | |||
Rui-Han Wei | |||
Zhao-Yang Yang | |||
P2860 | cites work | Clinical correlates of cerebral diffusion tensor imaging findings in chronic traumatic spinal cord injury. | Q50734112 |
Fractional amplitude of low-frequency fluctuation changes in monkeys with spinal cord injury: a resting-state fMRI study. | Q51153920 | ||
Longitudinal study on diffusion tensor imaging and diffusion tensor tractography following spinal cord contusion injury in rats. | Q51477505 | ||
The recovery of postural reflexes and locomotion following low thoracic hemisection in adult cats involves compensation by undamaged primary afferent pathways. | Q52222988 | ||
Three-dimensional musculoskeletal kinematics during bipedal locomotion in the Japanese macaque, reconstructed based on an anatomical model-matching method | Q58808785 | ||
Functional recovery following traumatic spinal cord injury mediated by a unique polymer scaffold seeded with neural stem cells | Q30476168 | ||
Recovery of supraspinal control of stepping via indirect propriospinal relay connections after spinal cord injury | Q30495890 | ||
Extensive spontaneous plasticity of corticospinal projections after primate spinal cord injury | Q30502891 | ||
Transformation of nonfunctional spinal circuits into functional states after the loss of brain input | Q33689714 | ||
Diffusion tensor imaging at 3 hours after traumatic spinal cord injury predicts long-term locomotor recovery | Q33841235 | ||
Spinal cord repair in adult paraplegic rats: partial restoration of hind limb function | Q34384227 | ||
Direct and indirect pathways for corticospinal control of upper limb motoneurons in the primate | Q35599303 | ||
Can experiments in nonhuman primates expedite the translation of treatments for spinal cord injury in humans? | Q35633750 | ||
The pathology of human spinal cord injury: defining the problems | Q35759281 | ||
NT3-chitosan elicits robust endogenous neurogenesis to enable functional recovery after spinal cord injury | Q36238241 | ||
Improved in vivo diffusion tensor imaging of human cervical spinal cord. | Q36706704 | ||
Correction of B0 susceptibility induced distortion in diffusion-weighted images using large-deformation diffeomorphic metric mapping | Q37033933 | ||
Atrophy and primary somatosensory cortical reorganization after unilateral thoracic spinal cord injury: a longitudinal functional magnetic resonance imaging study | Q37478461 | ||
Recovery of locomotion after spinal cord injury: some facts and mechanisms | Q37862247 | ||
Animal models of axon regeneration after spinal cord injury | Q38124778 | ||
Patient selection for clinical trials: the reliability of the early spinal cord injury examination | Q40581789 | ||
Diffusion tensor imaging and fiber tractography of patients with cervical spinal cord injury | Q42915072 | ||
Diffusion tensor tractography of residual fibers in traumatic spinal cord injury: a pilot study. | Q43464353 | ||
Gray and white matter correlates of navigational ability in humans. | Q44011531 | ||
Performance of locomotion and foot grasping following a unilateral thoracic corticospinal tract lesion in monkeys (Macaca mulatta). | Q45966390 | ||
Repair of thoracic spinal cord injury by chitosan tube implantation in adult rats | Q46223115 | ||
Kinematic and EMG determinants in quadrupedal locomotion of a non-human primate (Rhesus). | Q46761487 | ||
Time-dependent central compensatory mechanisms of finger dexterity after spinal cord injury | Q46897619 | ||
In vivo tracing of neural tracts in the intact and injured spinal cord of marmosets by diffusion tensor tractography | Q46918345 | ||
Do highly trained monkeys walk like humans? A kinematic study of bipedal locomotion in bipedally trained Japanese macaques | Q47336068 | ||
Function of the nucleus accumbens in motor control during recovery after spinal cord injury. | Q47609699 | ||
Ground-reaction-force profiles of bipedal walking in bipedally trained Japanese monkeys | Q47777995 | ||
In vivo DTI of the healthy and injured cat spinal cord at high spatial and angular resolution | Q47971652 | ||
Influence of walking speed on gait parameters of bipedal locomotion in rhesus monkeys | Q47999991 | ||
Alteration of brain regional homogeneity of monkeys with spinal cord injury: A longitudinal resting-state functional magnetic resonance imaging study. | Q48105971 | ||
Neurotrophin-3 enhances sprouting of corticospinal tract during development and after adult spinal cord lesion | Q48190429 | ||
Quantitative metrics for evaluating parallel acquisition techniques in diffusion tensor imaging at 3 Tesla | Q48398209 | ||
Reduction of eddy-current-induced distortion in diffusion MRI using a twice-refocused spin echo | Q48414699 | ||
Restoring voluntary control of locomotion after paralyzing spinal cord injury | Q48486697 | ||
Repair of adult rat corticospinal tract by transplants of olfactory ensheathing cells | Q48626271 | ||
Novel diffusion tensor imaging findings in Krabbe disease | Q48918427 | ||
Longitudinal evaluation of functional connectivity variation in the monkey sensorimotor network induced by spinal cord injury | Q49098613 | ||
P433 | issue | 5 | |
P304 | page(s) | 239-247 | |
P577 | publication date | 2017-05-23 | |
P1433 | published in | Journal of Medical Primatology | Q15755599 |
P1476 | title | Combination of kinematic analyses and diffusion tensor tractrography to evaluate the residual motor functions in spinal cord-hemisected monkeys | |
P478 | volume | 46 |
Q92729095 | Neuromuscular control pattern in rhesus monkeys during bipedal walking |
Q47655124 | Structural and metabolic changes in the traumatically injured rat brain: high-resolution in vivo proton magnetic resonance spectroscopy at 7 T. |
Q64124704 | The kinematic recovery process of rhesus monkeys after spinal cord injury |
Search more.