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Neurotrauma Reports|February 2, 2023
Unintentional Effects from Housing Enhancement Resulting in Functional Improvement in Spinal Cord-Injured MiceDarlene A Burke, Johnny R Morehouse, Sujata Saraswat Ohri, et al.Neurotrauma Reports|November 7, 2022
Direct Ryanodine Receptor-2 Knockout in Primary Afferent Fibers Modestly Affects Neurological Recovery after Contusive Spinal Cord InjuryBen C Orem, Johnny R Morehouse, Spencer Ames, et al.Journal of Neurotrauma|November 6, 2009
Gait analysis in normal and spinal contused mice using the TreadScan systemJason E Beare, Johnny R Morehouse, William H DeVries, et al.Plos One|November 23, 2021
Limited changes in locomotor recovery and unaffected white matter sparing after spinal cord contusion at different times of dayLukasz P Slomnicki, George Wei, Darlene A Burke, et al.Nature Communications|December 8, 2017
Reversible silencing of lumbar spinal interneurons unmasks a task-specific network for securing hindlimb alternationAmanda M Pocratsky, Darlene A Burke, Johnny R Morehouse, et al.Elife|December 15, 2023
Silencing long-descending inter-enlargement propriospinal neurons improves hindlimb stepping after contusive spinal cord injuriesCourtney T Shepard, Brandon L Brown, Morgan A Van Rijswijck, et al.Elife|December 2, 2021
Silencing long ascending propriospinal neurons after spinal cord injury improves hindlimb stepping in the adult ratCourtney T Shepard, Amanda M Pocratsky, Brandon L Brown, et al.Elife|September 9, 2020
Long ascending propriospinal neurons provide flexible, context-specific control of interlimb coordinationAmanda M Pocratsky, Courtney T Shepard, Johnny R Morehouse, et al.Pageof 1