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1. Gradual loss of myelin and formation of an astrocytic scar during Wallerian degeneration in the human spinal cord

2. Nogo-A Inhibits Neurite Outgrowth and Cell Spreading with Three Discrete Regions

3. Sequential loss of myelin proteins during Wallerian degeneration in the rat spinal cord

4. Functional polymorphisms in matrix metalloproteinases -1, -3, -9 and -12 in relation to cervical artery dissection

5. NG2 and phosphacan are present in the astroglial scar after human traumatic spinal cord injury

6. Acute rolipram/thalidomide treatment improves tissue sparing and locomotion after experimental spinal cord injury

7. TGF-beta1 and TGF-beta2 expression after traumatic human spinal cord injury

8. Matrix metalloproteinases and their inhibitors in human traumatic spinal cord injury

9. Growth-modulating molecules are associated with invading Schwann cells and not astrocytes in human traumatic spinal cord injury

10. Correlation of postmortem 9.4 tesla magnetic resonance imaging and immunohistopathology of the human thoracic spinal cord 7 months after traumatic cervical spine injury

11. Expression pattern of NOGO-A protein in the human nervous system

12. Rapid induction of autoantibodies against Nogo-A and MOG in the absence of an encephalitogenic T cell response: implication for immunotherapeutic approaches in neurological diseases

13. Systemic deletion of the myelin-associated outgrowth inhibitor Nogo-A improves regenerative and plastic responses after spinal cord injury

14. Major histocompatibility complex class II expression by activated microglia caudal to lesions of descending tracts in the human spinal cord is not associated with a T cell response

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18. Growth-modulating molecules are associated with invading Schwann cells and not astrocytes in human traumatic spinal cord injury.

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