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Biomaterials|October 17, 2016
Local delivery of minocycline from metal ion-assisted self-assembled complexes promotes neuroprotection and functional recovery after spinal cord injuryZhicheng Wang, Jia Nong, Robert B Shultz, et al.Journal of Neurotrauma|December 10, 2020
Spinal Dopaminergic Mechanisms Regulating the Micturition Reflex in Male Rats with Complete Spinal Cord InjuryYuan Qiao, Zachary D Brodnik, Shunyi Zhao, et al.The Journal of Neuroscience : the Official Journal of the Society for Neuroscience|September 2, 2005
Chronic enhancement of the intrinsic growth capacity of sensory neurons combined with the degradation of inhibitory proteoglycans allows functional regeneration of sensory axons through the dorsal root entry zone in the mammalian spinal cordMichael P Steinmetz, Kevin P Horn, Veronica J Tom, et al.Eneuro|August 21, 2025
Transplanting Neural Progenitor Cells Improves Neural Regulation But Not Hormonal Reliance of Cardiovascular Function Following Spinal Cord InjuryCameron T Trueblood, Fateme Khodadadi-Mericle, Zhifeng Qi, et al.Glia|May 10, 2025
Microglial IKKβ Alters Central and Peripheral Immune Activity at Distinct Time Points After Spinal Cord InjuryMicaela L O'Reilly, Mariah J Wulf, Theresa M Connors, et al.Experimental Neurology|October 2, 2012
Exogenous BDNF enhances the integration of chronically injured axons that regenerate through a peripheral nerve grafted into a chondroitinase-treated spinal cord injury siteVeronica J Tom, Harra R Sandrow-Feinberg, Kassi Miller, et al.The Journal of Neuroscience : the Official Journal of the Society for Neuroscience|November 23, 2019
Attenuating Neurogenic Sympathetic Hyperreflexia Robustly Improves Antibacterial Immunity After Chronic Spinal Cord InjuryEugene Mironets, Roman Fischer, Valerie Bracchi-Ricard, et al.Communications Biology|May 22, 2025
NF-κB inhibition attenuates sympathetic hyperreflexia and concomitant development of autonomic dysreflexia and immune dysfunction after spinal cord injuryMicaela L O'Reilly, Mariah J Wulf, Theresa M Connors, et al.The Journal of Neuroscience : the Official Journal of the Society for Neuroscience|April 4, 2018
Soluble TNFα Signaling within the Spinal Cord Contributes to the Development of Autonomic Dysreflexia and Ensuing Vascular and Immune Dysfunction after Spinal Cord InjuryEugene Mironets, Patrick Osei-Owusu, Valerie Bracchi-Ricard, et al.Pageof 4