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18篇 您的检索式:作者名="Evercooren"
    题名 作者 年代 出处 被引量
1Hoechst 33342 a suitable fluorescent marker for Schwann cells after transplantation in the mouse spinal cord显示文摘BARON-VAN EVERCOOREN A GANSMULLER A CLERIN E 1991Neurosci Lett1991,131,2:1
2The fate of Schwann cells transplanted in the brain during development显示文摘Baron-Van Evercooren A Clerin-Duhamel E Lapie P 1992Dev Neurosci1992,14,2:1
3Control of cell survival and proliferation of postnatal PSA-NCAM ( + ) progenitors 显示文摘Gago N Avellana-Adalid V Evercooren AB 2003Mol Cell Neurosci2003,22,2:1
4Stem cell transplantation in multiple sclerosis:current status and future prospects显示文摘Martino G Franklin RJ Van Evercooren AB 0,,05:1
5Control of cell survival and proliferation of postnatal PSA-NCAM(+)prngenitom显示文摘Gago N Avellana-adalid V Evercooren AB 2003Mol Cell Neurosci2003,22,1:1
6Control of cell survival and proliferation of postnatal PSA-NCAM (+) progenitors显示文摘Gago N Avellana-adalid V Evercooren AB 2003Mol Cell Neurosci2003,22,1:1
7Stem cell transplantation in multiple sclerosis: current status and future prospects 显示文摘Martino G Franklin R J Van Evercooren AB 2010Nat Rev Neuro2010,6,5:1
8Stem cell transplantation in multiple sclerosis: current status and future prospects显示文摘Martino G Franklin RJ Baron Van Evercooren A 2010Nat Rev Neurol2010,6,5:1
9Control of cell survival and proliferation of postnatal PSA-NCAM(+) progenitors显示文摘Gago N AvellanaAdalid V Evercooren A B 2003Mol Cell Neurosci2003,22,2:1
10Endogenous adult neural stem cells: limits and potential to repair the injured central nervous system 显示文摘Picavd-Riera N Nait-Oumesmar B Baron-Van Evercooren A 2004J Neurosci Res2004,76,2:1
11Hoechst 33342a suitable fluorescent marker for Schwann cells after transplantation in the mouse spinal cord显示文摘 Gansmuller A Clerin E 1991Neurosci Lett1991,131,:1
12Remyelination of the central nervous system:a valuable eontri bution from the periphery 显示文摘ZUjOVIC V BACHELIN C BARON-VAN EVERCOOREN A 2007Neuroscienlist2007,13,:1
13Endogenous adult neural stem cells:limits and potential to repair the injured central nervous system显示文摘Picard-Riera N Nait-Oumesmar B Evercooren ABV 2004J Neurosci Res2004,76,:1
14Control of cell survival and proliferation of postnatal PSA-NCAM(+)progenitors显示文摘Gago N Avellana-Adalid V Evercooren AB 2003Mol Cell Neurosci2003,22,2:1
15Endogenous adult neuralstem cells: limits and potential to repair the injured central nervous system 显示文摘Picavd2 RieraN Nait 2 Oumesmar B Barorr2Van Evercooren A1 2004NeurosciRes2004,76,2:1
16Differential requirement of cyclin - dependent kinase 2 for oligodendrocyte progenitor cell proliferation and differentiation 显示文摘Caillava C aron - Van Evercooren A 2012Cell Division2012,7,14:1
17In search of human oligodendroglia for myelin repair显示文摘Buchet D Baron-Van Evercooren A 0,,03:1
18The dorsal root ganglion as a target for neurorestoration in neuropathic pain显示文摘Neuropathic pain is a severe and chronic condition widely found in the general population.The reason for this is the extensive variety of damage or diseases that can spark this unpleasant constant feeling in patients.During the processing of pain,the dorsal root ganglia constitute an important region where dorsal root ganglion neurons play a crucial role in the transmission and propagation of sensory electrical stimulation.Furthermore,the dorsal root ganglia have recently exhibited a regenerative capacity that should not be neglected in the understanding of the development and resolution of neuropathic pain and in the elucidation of innovative therapies.Here,we will review the complex interplay between cells(satellite glial cells and inflammatory cells)and factors(cytokines,neurotrophic factors and genetic factors)that takes place within the dorsal root ganglia and accounts for the generation of the aberrant excitation of primary sensory neurons occurring in neuropathic pain.More importantly,we will summarize an updated view of the current pharmacologic and nonpharmacologic therapies targeting the dorsal root ganglia for the treatment of neuropathic pain.Guillermo Estivill-Torrús Ana Belen Martínez-Padilla Lourdes Sánchez-Salido Anne Baron-Van Evercooren Beatriz García-Díaz 2024Neural Regeneration Research2024,19,2:0
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