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Plos One|October 31, 2023
Intermediate gray matter interneurons in the lumbar spinal cord play a critical and necessary role in coordinated locomotionNaëmi Kuehn, Andreas Schwarz, Carlo Antonio Beretta, et al.Acta Biomaterialia|July 24, 2017
Regulated viral BDNF delivery in combination with Schwann cells promotes axonal regeneration through capillary alginate hydrogels after spinal cord injuryShengwen Liu, Beatrice Sandner, Thomas Schackel, et al.Tissue Engineering. Part A|October 24, 2018
Peptides and Astroglia Improve the Regenerative Capacity of Alginate Gels in the Injured Spinal CordThomas Schackel, Prateek Kumar, Manuel Günther, et al.Nature Metabolism|August 12, 2020
AMPK controls the axonal regenerative ability of dorsal root ganglia sensory neurons after spinal cord injuryGuiping Kong, Luming Zhou, Elisabeth Serger, et al.Eneuro|February 17, 2021
Combination of Defined CatWalk Gait Parameters for Predictive Locomotion Recovery in Experimental Spinal Cord Injury Rat ModelsIvanna K Timotius, Lara Bieler, Sebastien Couillard-Despres, et al.Brain : a Journal of Neurology|May 19, 2015
The MDM4/MDM2-p53-IGF1 axis controls axonal regeneration, sprouting and functional recovery after CNS injuryYashashree Joshi, Marília Grando Sória, Giorgia Quadrato, et al.Pain|May 13, 2024
Contribution of mechanoreceptors to spinal cord injury-induced mechanical allodyniaChristopher Sliwinski, Laura Heutehaus, Francisco J Taberner, et al.Nature Communications|April 2, 2014
PCAF-dependent epigenetic changes promote axonal regeneration in the central nervous systemRadhika Puttagunta, Andrea Tedeschi, Marilia Grando Sória, et al.Nature Genetics|October 14, 2003
Mutations in a novel gene encoding a CRAL-TRIO domain cause human Cayman ataxia and ataxia/dystonia in the jittery mouseJamee M Bomar, Paul J Benke, Eric L Slattery, et al.Science (New York, N.Y.)|May 13, 2022
Reversible CD8 T cell-neuron cross-talk causes aging-dependent neuronal regenerative declineLuming Zhou, Guiping Kong, Ilaria Palmisano, et al.Pageof 3