This study was supported by a grant from the Wellcome Trust to X.B. and Y.Z. S.L. was supported by a PhD studentship from Semyung University. U.K. was supported by the Sino-German Center for Research Promotion (GZ1236)
Activity dependent plasticity is a key mechanism for the central nervous system (CNS) to adapt to it...
Brief electrical stimulation enhances the regenerative ability of axotomized motor [Nix, W.A., Hopf,...
Poor functional outcomes are frequent after peripheral nerve injuries despite the regenerative suppo...
PhDUnlike the peripheral nervous system (PNS), adult neurons in the central nervous system (CNS) ha...
Injuries and diseases of the peripheral nervous system (PNS) are common but frequently irreversible....
Functional recovery after peripheral nerve injuries is critically dependent on axonal regeneration. ...
This thesis examines the roles of inflammation and the chondroitin sulphate proteoglycan NG2 in rege...
Axonal regeneration in the central nervous system (CNS) is a highly energy-demanding process. Extrin...
Achieving axon regeneration after nervous system injury is a challenging task. As different parts of...
Adenosine 5′-triphosphate (ATP) is an important trophic factor, which is co-stored and co-released a...
Copyright: © 2008 Song et al. This is an open-access article distributed under the terms of the Crea...
Background: Achieving functional repair after peripheral nerve injury (PNI) remains problematic desp...
This work was supported by Chang GungMemorialHospital, Taiwan CMRPG3A1051–1054to Z.-H.L., CMDRP and ...
Axons damaged by traumatic injuries are unable to spontaneously regenerate in the adult central nerv...
Objective: To test whether the signaling axis CXCL12α-CXCR4 is activated upon crush/cut of the sciat...
Activity dependent plasticity is a key mechanism for the central nervous system (CNS) to adapt to it...
Brief electrical stimulation enhances the regenerative ability of axotomized motor [Nix, W.A., Hopf,...
Poor functional outcomes are frequent after peripheral nerve injuries despite the regenerative suppo...
PhDUnlike the peripheral nervous system (PNS), adult neurons in the central nervous system (CNS) ha...
Injuries and diseases of the peripheral nervous system (PNS) are common but frequently irreversible....
Functional recovery after peripheral nerve injuries is critically dependent on axonal regeneration. ...
This thesis examines the roles of inflammation and the chondroitin sulphate proteoglycan NG2 in rege...
Axonal regeneration in the central nervous system (CNS) is a highly energy-demanding process. Extrin...
Achieving axon regeneration after nervous system injury is a challenging task. As different parts of...
Adenosine 5′-triphosphate (ATP) is an important trophic factor, which is co-stored and co-released a...
Copyright: © 2008 Song et al. This is an open-access article distributed under the terms of the Crea...
Background: Achieving functional repair after peripheral nerve injury (PNI) remains problematic desp...
This work was supported by Chang GungMemorialHospital, Taiwan CMRPG3A1051–1054to Z.-H.L., CMDRP and ...
Axons damaged by traumatic injuries are unable to spontaneously regenerate in the adult central nerv...
Objective: To test whether the signaling axis CXCL12α-CXCR4 is activated upon crush/cut of the sciat...
Activity dependent plasticity is a key mechanism for the central nervous system (CNS) to adapt to it...
Brief electrical stimulation enhances the regenerative ability of axotomized motor [Nix, W.A., Hopf,...
Poor functional outcomes are frequent after peripheral nerve injuries despite the regenerative suppo...