Frigon A, Akay T, Prilutsky B
    
    
    Compr Physiol. 2021; 12(1):2877-2947.
  
  
    PMID: 34964114
    
          PMC: 9159344.
    
          DOI: 10.1002/cphy.c210020.
      
 
                                  
  
    Sathyamurthy A, Barik A, Dobrott C, Matson K, Stoica S, Pursley R
    
    
    Cell Rep. 2020; 31(6):107595.
  
  
    PMID: 32402292
    
          PMC: 7263484.
    
          DOI: 10.1016/j.celrep.2020.107595.
      
 
                                  
  
    Brockett A, Hricz N, Tennyson S, Bryden D, Roesch M
    
    
    J Neurosci. 2020; 40(24):4715-4726.
  
  
    PMID: 32376779
    
          PMC: 7294803.
    
          DOI: 10.1523/JNEUROSCI.2775-19.2020.
      
 
                                  
  
    Doperalski A, Montgomery L, Mondello S, Howland D
    
    
    J Neurotrauma. 2019; 37(6):877-888.
  
  
    PMID: 31774025
    
          PMC: 7071060.
    
          DOI: 10.1089/neu.2018.6193.
      
 
                                  
  
    Zubair H, Chu K, Johnson J, Rivers T, Beloozerova I
    
    
    J Physiol. 2019; 597(21):5195-5229.
  
  
    PMID: 31460673
    
          PMC: 9260858.
    
          DOI: 10.1113/JP278108.
      
 
                              
              
                              
                                      
  Down regulation of vestibular balance stabilizing mechanisms to enable transition between motor states.
  
    Tisserand R, Dakin C, Van der Loos M, Croft E, Inglis T, Blouin J
    
    
    Elife. 2018; 7.
  
  
    PMID: 29989550
    
          PMC: 6056236.
    
          DOI: 10.7554/eLife.36123.
      
 
                                          
                                                          
  Improvement of cerebellar ataxic gait by injecting Cbln1 into the cerebellum of cbln1-null mice.
  
    Takeuchi E, Ito-Ishida A, Yuzaki M, Yanagihara D
    
    
    Sci Rep. 2018; 8(1):6184.
  
  
    PMID: 29670152
    
          PMC: 5906462.
    
          DOI: 10.1038/s41598-018-24490-0.
      
 
                                          
                                                          
  Control of voluntary and optogenetically perturbed locomotion by spike rate and timing of neurons of the mouse cerebellar nuclei.
  
    Sarnaik R, Raman I
    
    
    Elife. 2018; 7.
  
  
    PMID: 29659351
    
          PMC: 5902160.
    
          DOI: 10.7554/eLife.29546.
      
 
                                          
                                                          
  Supraspinal Control Predicts Locomotor Function and Forecasts Responsiveness to Training after Spinal Cord Injury.
  
    Field-Fote E, Yang J, Basso D, Gorassini M
    
    
    J Neurotrauma. 2016; 34(9):1813-1825.
  
  
    PMID: 27673569
    
          PMC: 5583559.
    
          DOI: 10.1089/neu.2016.4565.
      
 
                                          
                                                          
  Distinct Thalamo-Cortical Controls for Shoulder, Elbow, and Wrist during Locomotion.
  
    Beloozerova I, Stout E, Sirota M
    
    
    Front Comput Neurosci. 2013; 7:62.
  
  
    PMID: 23734124
    
          PMC: 3659318.
    
          DOI: 10.3389/fncom.2013.00062.
      
 
                                          
                                                          
  Signals from the ventrolateral thalamus to the motor cortex during locomotion.
  
    Marlinski V, Nilaweera W, Zelenin P, Sirota M, Beloozerova I
    
    
    J Neurophysiol. 2011; 107(1):455-72.
  
  
    PMID: 21994259
    
          PMC: 3349693.
    
          DOI: 10.1152/jn.01113.2010.
      
 
                                          
                                                          
  Do spinocerebellar neurones forward information on spinal actions of neurones in the feline red nucleus?.
  
    Jankowska E, Nilsson E, Hammar I
    
    
    J Physiol. 2011; 589(Pt 23):5727-39.
  
  
    PMID: 21986203
    
          PMC: 3249046.
    
          DOI: 10.1113/jphysiol.2011.213694.
      
 
                                          
                                                          
  Contribution of different limb controllers to modulation of motor cortex neurons during locomotion.
  
    Zelenin P, Deliagina T, Orlovsky G, Karayannidou A, Dasgupta N, Sirota M
    
    
    J Neurosci. 2011; 31(12):4636-49.
  
  
    PMID: 21430163
    
          PMC: 3073383.
    
          DOI: 10.1523/JNEUROSCI.6511-10.2011.
      
 
                                          
                                                          
  Reciprocal Ia inhibition contributes to motoneuronal hyperpolarisation during the inactive phase of locomotion and scratching in the cat.
  
    Geertsen S, Stecina K, Meehan C, Nielsen J, Hultborn H
    
    
    J Physiol. 2010; 589(Pt 1):119-34.
  
  
    PMID: 21059756
    
          PMC: 3039264.
    
          DOI: 10.1113/jphysiol.2010.199125.
      
 
                                          
                                                          
  Activity of red nucleus neurons in the cat during postural corrections.
  
    Zelenin P, Beloozerova I, Sirota M, Orlovsky G, Deliagina T
    
    
    J Neurosci. 2010; 30(43):14533-42.
  
  
    PMID: 20980611
    
          PMC: 2988228.
    
          DOI: 10.1523/JNEUROSCI.2991-10.2010.
      
 
                                          
                                                          
  Neurophysiologic and rehabilitation insights from the split-belt and other locomotor adaptation paradigms.
  
    Reisman D, Bastian A, Morton S
    
    
    Phys Ther. 2009; 90(2):187-95.
  
  
    PMID: 20023001
    
          PMC: 2816031.
    
          DOI: 10.2522/ptj.20090073.
      
 
                                          
                                                          
  Synaptic and cellular properties of the feedforward inhibitory circuit within the input layer of the cerebellar cortex.
  
    Kanichay R, Silver R
    
    
    J Neurosci. 2008; 28(36):8955-67.
  
  
    PMID: 18768689
    
          PMC: 2923072.
    
          DOI: 10.1523/JNEUROSCI.5469-07.2008.
      
 
                                          
                                                          
  The spinobulbar system in lamprey.
  
    Buchanan J, Einum J
    
    
    Brain Res Rev. 2007; 57(1):37-45.
  
  
    PMID: 17716741
    
          PMC: 2246055.
    
          DOI: 10.1016/j.brainresrev.2007.07.010.
      
 
                                          
                                                          
  Mechanisms of cerebellar gait ataxia.
  
    Morton S, Bastian A
    
    
    Cerebellum. 2007; 6(1):79-86.
  
  
    PMID: 17366269
    
    
          DOI: 10.1080/14734220601187741.
      
 
                                          
                                                          
  Cessation of activity in red nucleus neurons during stimulation of the medial medulla in decerebrate rats.
  
    Mileykovskiy B, Kiyashchenko L, Siegel J
    
    
    J Physiol. 2002; 545(3):997-1006.
  
  
    PMID: 12482902
    
          PMC: 2290716.
    
          DOI: 10.1113/jphysiol.2002.028985.