Show all

2015

Jin, Y; Bouyer, J; Haas, C; Fischer, I

Evaluation of the anatomical and functional consequences of repetitive mild cervical contusion using a model of spinal concussion Journal Article

In: Experimental Neurology, vol. 271, pp. 175–188, 2015.

Abstract | BibTeX | Tags: *Gait Disorders, *Spinal Cord Injuries/co [Complications], *Spinal Cord Injuries/pa [Pathology], *Spinal Cord/pa [Pathology], 0 (Antigens, 0 (Ectodysplasins), 0 (Glial Fibrillary Acidic Protein), ANALYSIS of variance, animal, Animals, Antigens, CD31), CD31/me [Metabolism], Contusions/co [Complications], Disease Models, EC 2-7-11-13 (Protein Kinase C), Ectodysplasins/me [Metabolism], Exploratory Behavior/ph [Physiology], Female, Glial Fibrillary Acidic Protein/me [Metabolism], Muscle Strength/ph [Physiology], Neurologic/et [Etiology], PAIN measurement, Protein Kinase C/me [Metabolism], Rats, Spinal Cord Injuries/et [Etiology], Spinal Cord/me [Metabolism], Sprague-Dawley

Reference Search

Show all

1.

Jin, Y; Bouyer, J; Haas, C; Fischer, I

Evaluation of the anatomical and functional consequences of repetitive mild cervical contusion using a model of spinal concussion Journal Article

In: Experimental Neurology, vol. 271, pp. 175–188, 2015.

Abstract | BibTeX

Most Referenced Keywords

Show all

2015

Jin, Y; Bouyer, J; Haas, C; Fischer, I

Evaluation of the anatomical and functional consequences of repetitive mild cervical contusion using a model of spinal concussion Journal Article

In: Experimental Neurology, vol. 271, pp. 175–188, 2015.

Abstract | BibTeX | Tags: *Gait Disorders, *Spinal Cord Injuries/co [Complications], *Spinal Cord Injuries/pa [Pathology], *Spinal Cord/pa [Pathology], 0 (Antigens, 0 (Ectodysplasins), 0 (Glial Fibrillary Acidic Protein), ANALYSIS of variance, animal, Animals, Antigens, CD31), CD31/me [Metabolism], Contusions/co [Complications], Disease Models, EC 2-7-11-13 (Protein Kinase C), Ectodysplasins/me [Metabolism], Exploratory Behavior/ph [Physiology], Female, Glial Fibrillary Acidic Protein/me [Metabolism], Muscle Strength/ph [Physiology], Neurologic/et [Etiology], PAIN measurement, Protein Kinase C/me [Metabolism], Rats, Spinal Cord Injuries/et [Etiology], Spinal Cord/me [Metabolism], Sprague-Dawley