1)van den Brand R, Heutschi J, Barraud Q, et al. Restoring voluntary control of locomotion after paralyzing spinal cord injury. Science. 2012; 336: 1182-5
|
|
|
2)Calancie B, Needham-Shropshire B, Jacobs P, et al. Involuntary stepping after chronic spinal cord injury. Evidence for a central rhythm generator for locomotion in man. Brain. 1994; 117: 1143-59
|
|
|
3)Dietz V, Colombo G, Jensen L. Locomotor activity in spinal man. Lancet. 1994; 344: 1260-3
|
|
|
4)Jilge B, Minassian K, Rattay F, et al. Initiating extension of the lower limbs in subjects with complete spinal cord injury by epidural lumbar cord stimulation. Exp Brain Res. 2004; 154: 308-26
|
|
|
5)Dietz V, Müller R, Colombo G. Locomotor activity in spinal man: significance of afferent input from joint and load receptors. Brain. 2002; 125: 2626-34
|
|
|
6)Selionov VA, Ivanenko YP, Solopova IA, et al. Tonic central and sensory stimuli facilitate involuntary air-stepping in humans. J Neurophysiol. 2009; 101: 2847-58
|
|
|
7)Gerasimenko Y, Gorodnichev R, Machueva E, et al. Novel and direct access to the human locomotor spinal circuitry. J Neurosci. 2010; 30: 3700-8
|
|
|
8)Cogiamanian F, Vergari M, Pulecchi F, et al. Effect of spinal transcutaneous direct current stimulation on somatosensory evoked potentials in humans. Clin Neurophysiol. 2008; 119: 2636-40
|
|
|
9)Cogiamanian F, Vergari M, Schiaffi E, et al. Transcutaneous spinal cord direct current stimulation inhibits the lower limb nociceptive flexion reflex in human beings. Pain. 2011; 152: 370-5
|
|
|
10)Winkler T, Hering P, Straube A. Spinal DC stimulation in humans modulates post-activation depression of the H-reflex depending on current polarity. Clin Neurophysiol. 2010; 121: 957-61
|
|
|
11)Lamy JC, Ho C, Badel A, et al. Modulation of soleus H reflex by spinal DC stimulation in humans. J Neurophysiol. 2012; 108: 906-14
|
|
|
12)Hubli M, Dietz V, Schrafl-Altermatt M, et al. Modulation of spinal neuronal excitability by spinal direct currents and locomotion after spinal cord injury. Clin Neurophysiol. 2013; 124: 1187-95
|
|
|
13)Sławińska U, Rossignol S, Bennett DJ, et al. Comment on “Restoring voluntary control of locomotion after paralyzing spinal cord injury”. Science. 2012; 338: 328
|
|
|
14)Sławińska U, Majczyński H, Dai Y, et al. The upright posture improves plantar stepping and alters responses to serotonergic drugs in spinal rats. J Physiol. 2012; 590(Pt 7): 1721-36
|
|
|
15)Courtine G, Heutschi J, van den Brand R. Response to Comment on “Restoring voluntary control of locomotion after paralyzing spinal cord injury”. Science. 2012; 338: 328
|
|
|
16)Dobkin B, Apple D, Barbeau H, et al; Spinal Cord Injury Locomotor Trial Group. Weight-supported treadmill vs over-ground training for walking after acute incomplete SCI. Neurology. 2006; 66: 484-93
|
|
|
17)Hidler J, Nichols D, Pelliccio M, et al. Multicenter randomized clinical trial evaluating the effectiveness of the Lokomat in subacute stroke. Neurorehabil Neural Repair. 2009; 23: 5-13
|
|
|
18)Harkema S, Gerasimenko Y, Hodes J, et al. Effect of epidural stimulation of the lumbosacral spinal cord on voluntary movement, standing, and assisted stepping after motor complete paraplegia: a case study. Lancet. 2011; 377: 1938-47
|
|
|
19)Courtine G, van den Brand R, Musienko P. Spinal cord injury: time to move. Lancet. 2011; 377: 1896-8
|
|
|