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1. Secondary Degeneration of Oligodendrocyte Precursor Cells Occurs as Early as 24 h after Optic Nerve Injury in Rats

2. Elucidating the Inability of Functionalized Nanoparticles to Cross the Blood–Brain Barrier and Target Specific Cells in Vivo

3. Differential responses to increasing numbers of mild traumatic brain injury in a rodent closed‐head injury model

4. Acute Cellular and Functional Changes With a Combinatorial Treatment of Ion Channel Inhibitors Following Spinal Cord Injury

5. Comparison of ion channel inhibitor combinations for limiting secondary degeneration following partial optic nerve transection

6. Inflammation and blood-brain barrier breach remote from the primary injury following neurotrauma

7. Specific ion channels contribute to key elements of pathology during secondary degeneration following neurotrauma

8. Repeated mild traumatic brain injury in female rats increases lipid peroxidation in neurons

9. Comparing modes of delivery of a combination of ion channel inhibitors for limiting secondary degeneration following partial optic nerve transection

10. Partial Transection of Adult Rat Optic Nerve as a Model of Secondary Degeneration in the Central Nervous System

11. Characterization of polymeric nanoparticles for treatment of partial injury to the central nervous system

12. The effects of a combination of ion channel inhibitors on pathology in a model of demyelinating disease

13. Oligodendroglia Are Particularly Vulnerable to Oxidative Damage After Neurotrauma In Vivo

14. The Effects of a Combination of Ion Channel Inhibitors in Female Rats Following Repeated Mild Traumatic Brain Injury

15. Three dimensional electron microscopy reveals changing axonal and myelin morphology along normal and partially injured optic nerves

16. Retinal genes are differentially expressed in areas of primary versus secondary degeneration following partial optic nerve injury

17. Prolonged glutamate excitotoxicity increases GluR1 immunoreactivity but decreases mRNA of GluR1 and associated regulatory proteins in dissociated rat retinae in vitro

18. Specific combinations of ion channel inhibitors reduce excessive Ca

19. Comparative assessment of phototherapy protocols for reduction of oxidative stress in partially transected spinal cord slices undergoing secondary degeneration

20. Early in vivo changes in calcium ions, oxidative stress markers, and ion channel immunoreactivity following partial injury to the optic nerve

21. Chronic Swelling and Abnormal Myelination during Secondary Degeneration after Partial Injury to a Central Nervous System Tract

22. The effects of concentration-dependent morphology of self-assembling RADA16 nanoscaffolds on mixed retinal cultures

23. Limited restoration of visual function after partial optic nerve injury; a time course study using the calcium channel blocker lomerizine

24. Secondary degeneration of the optic nerve following partial transection: The benefits of lomerizine

25. Redefining the Role of Metallothionein within the Injured Brain

26. EphA5 and ephrin-A2 expression during optic nerve regeneration: a ‘two-edged sword’

27. Enabling dual cellular destinations of polymeric nanoparticles for treatment following partial injury to the central nervous system

28. Retinal ganglion cell axons regenerate in the presence of intact sensory fibres

29. Transient up-regulation of retinal EphA3 and EphA5, but not ephrin-A2, coincides with re-establishment of a topographic map during optic nerve regeneration in goldfish

30. PSA-NCAM is up-regulated during optic nerve regeneration in lizard but not in goldfish

31. Delayed treatment of secondary degeneration following acute optic nerve transection using a combination of ion channel inhibitors

32. Low intensity repetitive transcranial magnetic stimulation does not induce cell survival or regeneration in a mouse optic nerve crush model

33. Differential Effects of 670 and 830 nm Red near Infrared Irradiation Therapy: A Comparative Study of Optic Nerve Injury, Retinal Degeneration, Traumatic Brain and Spinal Cord Injury

34. Reactive species and oxidative stress in optic nerve vulnerable to secondary degeneration

35. Changes in subtypes of Ca microdomains following partial injury to the central nervous system

36. Transient Up-Regulation of the Rostrocaudal Gradient of Ephrin A2 in the Tectum Coincides with Reestablishment of Orderly Projections during Optic Nerve Regeneration in Goldfish

37. Three Ca2+ channel inhibitors in combination limit chronic secondary degeneration following neurotrauma

38. Early proliferation does not prevent the loss of oligodendrocyte progenitor cells during the chronic phase of secondary degeneration in a CNS white matter tract

39. Paranode Abnormalities and Oxidative Stress in Optic Nerve Vulnerable to Secondary Degeneration: Modulation by 670 nm Light Treatment

40. Myelin sheath decompaction, axon swelling, and functional loss during chronic secondary degeneration in rat optic nerve

41. In vivo imaging and biodistribution of multimodal polymeric nanoparticles delivered to the optic nerve

42. Early events of secondary degeneration after partial optic nerve transection: an immunohistochemical study

43. Regional and cellular distribution of ephrin-B1 in adult mouse brain

44. Functional topography and integration of the contralateral and ipsilateral retinocollicular projections of ephrin-A-/- mice

45. Opic Nerve Regeneration: Molecular Pre-Requisites and the Role of Training

46. Ephrin-B2 immunoreactivity distribution in adult mouse brain

47. Metallothionein-IIA promotes neurite growth via the megalin receptor

49. Erythropoietin is both neuroprotective and neuroregenerative following optic nerve transection

50. Characterisation of tectal ephrin-A2 expression during optic nerve regeneration in goldfish: implications for restoration of topography

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