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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.
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.
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