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Schematic Representation Of The Cns Injury Site Injury To The Adult Cns

schematic Representation Of The Cns Injury Site Injury To The Adult Cns
schematic Representation Of The Cns Injury Site Injury To The Adult Cns

Schematic Representation Of The Cns Injury Site Injury To The Adult Cns Traumatic injury to the central nervous system (cns) or the peripheral nervous system (pns) triggers a cascade of events which culminate in a robust inflammatory reaction. the role played by inflammation in the course of degeneration and regeneration is not completely elucidated. while, in peripheral nerves, the inflammatory response is assumed. Figure 1: schematic representation of the cns injury site. injury to the adult cns often results in the transection of nerve fibres and damage to surrounding tissues.

schematic representation Of Mechanisms Of Neuroinflammation In cns
schematic representation Of Mechanisms Of Neuroinflammation In cns

Schematic Representation Of Mechanisms Of Neuroinflammation In Cns Schematic representation of the cns injury site injury to the adult cns often results in the transection of nerve fibres and damage to surrounding tissues. the distal ends of the severed axons form characteristic dystrophic growth cones that are exposed to the damaged glial environment 4 . Glial cells play crucial roles in brain homeostasis and pathogenesis of central nervous system (cns) injuries and diseases. however, the roles of these cells and the molecular mechanisms toward regeneration in the cns have not been fully understood, especially the capacity of them toward demyelinating diseases. therefore, there are still very limited therapeutic strategies to restore the. In the mature cns. figure 1 | schematic representation of the cns injury site. injury to the adult cns often results in the transection of nerve fibres and damage to surrounding tissues. the. Axons of immature central nervous system (cns) and adult peripheral nervous system (pns) neurons readily regenerate after injury 1,2.in contrast, adult cns neurons lose their regenerative ability.

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