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Titlebook: Current Progress in the Understanding of Secondary Brain Damage from Trauma and Ischemia; Proceedings of the 6 Alexander Baethmann,Nikolaus

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书目名称Current Progress in the Understanding of Secondary Brain Damage from Trauma and Ischemia
副标题Proceedings of the 6
编辑Alexander Baethmann,Nikolaus Plesnila,Jörg Eriskat
视频video
丛书名称Acta Neurochirurgica Supplement
图书封面Titlebook: Current Progress in the Understanding of Secondary Brain Damage from Trauma and Ischemia; Proceedings of the 6 Alexander Baethmann,Nikolaus
出版日期Conference proceedings 1999
关键词European Brain Injury Consortium; Schädel-Hirn-Trauma; Severe head injury; Trauma; axonal injury; neuropr
版次1
doihttps://doi.org/10.1007/978-3-7091-6391-7
isbn_softcover978-3-7091-7312-1
isbn_ebook978-3-7091-6391-7Series ISSN 0065-1419 Series E-ISSN 2197-8395
issn_series 0065-1419
copyrightSpringer-Verlag Wien 1999
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Molecular Signals for Glial Activation: Pro- and Anti-Inflammatory Cytokines in the Injured Brain,ith reduced or abolished neuroglial activation provides a direct approach to determine the function of the different components of the cellular response leading to repair and regeneration following neural trauma.
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https://doi.org/10.1007/978-3-642-03474-9endritic architecture of these cells was analyzed. Our data suggest that motoneurons are a suitable model for investigating the complex functional and morphological changes after brain lesion and for the identification of new therapeutic strategies to influence survival and functional recovery under such circumstances.
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https://doi.org/10.1007/978-3-642-14927-6r moderate on the Glasgow Outcome Scale), by more than 50%. Increased intracranial volume resulting in intracranial hypertension was the single most frequent cause of neurologic worsening. This serves to emphasize the importance of more adequate treatments of intracranial hypertension in improving the outcome of patients with severe head injury.
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Mechanical and Excitotoxic Lesion of Motoneurons: Effects of Neurotrophins and Ciliary Neurotrophicendritic architecture of these cells was analyzed. Our data suggest that motoneurons are a suitable model for investigating the complex functional and morphological changes after brain lesion and for the identification of new therapeutic strategies to influence survival and functional recovery under such circumstances.
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