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Der Ophthalmologe : Zeitschrift Der Deutschen Ophthalmologischen Gesellschaft|March 6, 1998
[Autologous thrombocyte administration in treatment of idiopathic macular foramen]F Faude, E Edel, M Dannhauer, et al.Glia|July 1, 1997
Loss of inwardly rectifying potassium currents by human retinal glial cells in diseases of the eyeM Francke, T Pannicke, B Biedermann, et al.Investigative Ophthalmology & Visual Science|May 1, 2001
Facilitation of artificial retinal detachment for macular translocation surgery tested in rabbitF Faude, S Wendt, B Biedermann, et al.Investigative Ophthalmology & Visual Science|March 29, 2001
Electrophysiology of rabbit Müller (glial) cells in experimental retinal detachment and PVRM Francke, F Faude, T Pannicke, et al.Journal of Neurocytology|April 16, 2002
Experimental retinal detachment causes widespread and multilayered degeneration in rabbit retinaF Faude, M Francke, F Makarov, et al.Journal of Neurocytology|September 29, 2001
Retinal pigment epithelium melanin granules are phagocytozed by Müller glial cells in experimental retinal detachmentM Francke, F Makarov, J Kacza, et al.Investigative Ophthalmology & Visual Science|December 10, 1999
Human Müller glial cells: altered potassium channel activity in proliferative vitreoretinopathyA Bringmann, M Francke, T Pannicke, et al.The Journal of Neuroscience : the Official Journal of the Society for Neuroscience|August 10, 2000
P2X7 receptors in Müller glial cells from the human retinaT Pannicke, W Fischer, B Biedermann, et al.Glia|April 1, 1997
Mammalian retinal glial (Müller) cells express large-conductance Ca(2+)-activated K+ channels that are modulated by Mg2+ and pH and activated by protein kinase AA Bringmann, F Faude, A ReichenbachLong Range Planning|September 8, 1983
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