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  1. In an effort to develop novel treatments for communicating hydrocephalus, we have shown previously that the transforming growth factor-β antagonist, decorin, inhibits subarachnoid fibrosis mediated ventriculom...

    Authors: Anuriti Aojula, Hannah Botfield, James Patterson McAllister II, Ana Maria Gonzalez, Osama Abdullah, Ann Logan and Alexandra Sinclair
    Citation: Fluids and Barriers of the CNS 2016 13:9
  2. Previous work with 3-week hydrocephalic rats showed that white matter damage could be reduced by the calcium channel antagonist magnesium sulfate (MgSO4). We hypothesized that MgSO4 therapy would improve outcomes...

    Authors: Domenico L. Di Curzio, Emily Turner-Brannen, Xiaoyan Mao and Marc R. Del Bigio
    Citation: Fluids and Barriers of the CNS 2016 13:7
  3. Patient-derived induced pluripotent stem cells (iPSCs) are an innovative source as an in vitro model for neurological diseases. Recent studies have demonstrated the differentiation of brain microvascular endot...

    Authors: Ronak Patel and Abraham J. Alahmad
    Citation: Fluids and Barriers of the CNS 2016 13:6
  4. Within the consolidated field of evolutionary development, there is emerging research on evolutionary aspects of central nervous system development and its implications for adult brain structure and function, ...

    Authors: David Bueno and Jordi Garcia-Fernàndez
    Citation: Fluids and Barriers of the CNS 2016 13:5
  5. A vascular disease could be involved in pathophysiology of normal pressure hydrocephalus (INPH). If so, there should be an association between INPH and cerebral microbleeds (CMB). This study aims to analyze if...

    Authors: Elias Johansson, Khalid Ambarki, Richard Birgander, Nazila Bahrami, Anders Eklund and Jan Malm
    Citation: Fluids and Barriers of the CNS 2016 13:4
  6. The blood–cerebrospinal fluid barrier (BCSFB) established by the choroid plexus (CP) epithelium has been recognized as a potential entry site of immune cells into the central nervous system during immunosurvei...

    Authors: Ivana Lazarevic and Britta Engelhardt
    Citation: Fluids and Barriers of the CNS 2016 13:2
  7. Research into brain barriers and brain fluids has been advancing rapidly in recent years. This editorial aims to highlight some of the advances that have improved our understanding of this complex subject. It ...

    Authors: Lester R. Drewes, Hazel C. Jones and Richard F. Keep
    Citation: Fluids and Barriers of the CNS 2016 13:1
  8. A polyspecific, intrathecal humoral immune response against the neurotropic viruses, measles, rubella and varicella zoster virus, called “MRZ reaction” (MRZR), is present in the majority of patients with multi...

    Authors: Tilman Hottenrott, Rick Dersch, Benjamin Berger, Sebastian Rauer, Matthias Eckenweiler, Daniela Huzly and Oliver Stich
    Citation: Fluids and Barriers of the CNS 2015 12:27
  9. Shunt obstruction in the treatment of hydrocephalus is poorly understood, is multi-factorial, and in many cases is modeled ineffectively. Several mechanisms may be responsible, one of which involves shunt infi...

    Authors: Carolyn Harris, Kelsie Pearson, Kristen Hadley, Shanshan Zhu, Samuel Browd, Brian W. Hanak and William Shain
    Citation: Fluids and Barriers of the CNS 2015 12:26
  10. Imaging of the brain surface vasculature following inflammatory insults is critical to study structural and functional changes in the living brain under normal and pathological conditions. Although there have ...

    Authors: Viviana Zuluaga-Ramirez, Slava Rom and Yuri Persidsky
    Citation: Fluids and Barriers of the CNS 2015 12:24
  11. In the absence of a true lymphatic system in the brain parenchyma, alternative clearance pathways for excess fluid and waste products have been proposed. Suggested mechanisms for clearance implicate a role for...

    Authors: Beatrice Bedussi, Monique G. J. T. B. van Lier, Jonas W. Bartstra, Judith de Vos, Maria Siebes, Ed VanBavel and Erik N. T. P. Bakker
    Citation: Fluids and Barriers of the CNS 2015 12:23
  12. Due to anatomical restrictions, the inflammatory response to intracerebral bacterial infections exposes swollen brain tissues to pressure and ischemia, resulting in life-threatening damage. Rapid diagnosis and...

    Authors: Amir Ramezani, Katarina Nägga, Oskar Hansson, Johanna Lönn, Johanna Sjöwall, Fateme Katoozian, Sepahdar Mansouri and Fariba Nayeri
    Citation: Fluids and Barriers of the CNS 2015 12:22
  13. Authors: Hasan Asif, Claudia Craven, Syed N Shah, Simon D Thompson, Aswin Chari, Samir A Matloob, Neekhil A Patel, Edward W Dyson, Patricia Haylock-Vize, Andrew R Stevens, Huan Wee Chan, Jinendra Ekanayake, Tarek Mostafa, Ahmed K Toma and Laurence D Watkins
    Citation: Fluids and Barriers of the CNS 2015 12(Suppl 1):O65

    This article is part of a Supplement: Volume 12 Supplement 1

  14. Authors: Hiroshi Kageyama, Ikuko Ogino, Kazuaki Shimoji, Madoka Nakajima, Ryoko Fukai, Noriko Miyake, Kenichi Nishiyama, Naomichi Matsumoto, Hajime Arai and Masakazu Miyajima
    Citation: Fluids and Barriers of the CNS 2015 12(Suppl 1):O28

    This article is part of a Supplement: Volume 12 Supplement 1

  15. Authors: Patricia Anne Haylock-Vize, Eleanor Carter, Syed Shah, Claudia Craven, Aswin Chari, Simon Thompson, Edward W Dyson, Samir Matloob, Andrew Stevens, Huan Wee Chan, Jinendra Ekanayake, Ahmed Toma, Michelle Leemans and Laurence D Watkins
    Citation: Fluids and Barriers of the CNS 2015 12(Suppl 1):P18

    This article is part of a Supplement: Volume 12 Supplement 1