Content area

Abstract

After complete spinal cord transections that removed all supraspinal inputs in adult rats, combinations of serotonergic agonists and epidural electrical stimulation were able to acutely transform spinal networks from nonfunctional to highly functional and adaptive states as early as 1 week after injury. Using kinematics, physiological and anatomical analyses, we found that these interventions could recruit specific populations of spinal circuits, refine their control via sensory input and functionally remodel these locomotor pathways when combined with training. The emergence of these new functional states enabled full weight-bearing treadmill locomotion in paralyzed rats that was almost indistinguishable from voluntary stepping. We propose that, in the absence of supraspinal input, spinal locomotion can emerge from a combination of central pattern-generating capability and the ability of these spinal circuits to use sensory afferent input to control stepping. These findings provide a strategy by which individuals with spinal cord injuries could regain substantial levels of motor control.

Details

Title
Transformation of nonfunctional spinal circuits into functional states after the loss of brain input
Author
Courtine, Grégoire; Gerasimenko, Yury; Van Den Brand, Rubia; Yew, Aileen; Musienko, Pavel; Zhong, Hui; Song, Bingbing; Ao, Yan; Ichiyama, Ronaldo M; Lavrov, Igor; Roy, Roland R; Sofroniew, Michael V; Edgerton, V Reggie
Pages
1333-42
Publication year
2009
Publication date
Oct 2009
Publisher
Nature Publishing Group
ISSN
10976256
e-ISSN
15461726
Source type
Scholarly Journal
Language of publication
English
ProQuest document ID
274630782
Copyright
Copyright Nature Publishing Group Oct 2009