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2. Abstracts from Hydrocephalus 2016

3. Lack of formation of Reissner fiber leads to hydrocephalus

5. Neural stem cell therapy of foetal onset hydrocephalus using the HTx rat as experimental model.

6. Organ Culture and Grafting of Choroid Plexus into the Ventricular CSF of Normal and Hydrocephalic HTx Rats.

7. The subcommissural organ and the Reissner fiber: old friends revisited.

8. Neurospheres from neural stem/neural progenitor cells (NSPCs) of non-hydrocephalic HTx rats produce neurons, astrocytes and multiciliated ependyma: the cerebrospinal fluid of normal and hydrocephalic rats supports such a differentiation.

9. Understanding How the Subcommissural Organ and Other Periventricular Secretory Structures Contribute via the Cerebrospinal Fluid to Neurogenesis.

10. Cell Junction Pathology of Neural Stem Cells Is Associated With Ventricular Zone Disruption, Hydrocephalus, and Abnormal Neurogenesis.

11. Role of the subcommissural organ in the pathogenesis of congenital hydrocephalus in the HTx rat.

12. Astrocytes acquire morphological and functional characteristics of ependymal cells following disruption of ependyma in hydrocephalus.

13. A cell junction pathology of neural stem cells leads to abnormal neurogenesis and hydrocephalus.

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