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Titlebook: Axon Growth and Guidance; Dominique Bagnard Book 2007 The Editor(s) (if applicable) and The Author(s), under exclusive license to Springer

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發(fā)表于 2025-3-21 17:29:29 | 只看該作者 |倒序瀏覽 |閱讀模式
期刊全稱Axon Growth and Guidance
影響因子2023Dominique Bagnard
視頻videohttp://file.papertrans.cn/168/167742/167742.mp4
學(xué)科分類Advances in Experimental Medicine and Biology
圖書封面Titlebook: Axon Growth and Guidance;  Dominique Bagnard Book 2007 The Editor(s) (if applicable) and The Author(s), under exclusive license to Springer
影響因子The complexarchitectureofneuronal networks togetherwith the extraordinary associated functions make the nervous system a fascinating biological structure. The considerable work performed to explore this cellular machinery is nowadays successfulbecause the mysteryofnervous system developmentisbeing unravelled. As described in their outstanding review published 10 years ago in Science.‘ Marc Tessier-Lavigne and Corey Goodman-the pioneers of the molecular era of axon guidance-summarized the assembly of nervous system connections as a subtle game of attraction and repulsion of neuronal growth cones. The cellular ballet ensuring the formation of billions of synapses, which ultimately gives rise to the highest cognitive functions, is primarily orchestrated by a step-by-step mechanism of growth driven by multiple molecular cues. While our general concept of axon guidance remains identical, a profound evolution ofour knowledge ofthe molecular identityofthe guidance cues together with their interactions and signalling pathways occurred over the past ten years. This book proposes an exhaustive and updated view ofthe current knowledge ofthe molecular and cellular mechanisms ensuring axon grow
Pindex Book 2007
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Rebecca J. Gordon,Michael A. Levinevement of a coordinated cross-talk between actin filaments and microtubules, the two main components of the growth cone cytoskeleton. Their reorganization is complex and involves numerous cytoskeleton-associated proteins whose function is regulated via activation or inhibition of particular signalin
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https://doi.org/10.1007/978-88-470-5376-2m, Eph signaling regulates the migration pattern of neural crest cells, the boundary formation between hindbrain segments (rhombomeres), the proper formation of the corticospinal tract, the establishment of neural topographic maps and the formation and functional properties of neuronal synapses ., .
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Michael Mannstadt MD,John T. Potts Jr. MD VII). Together with plexins and scatter factor receptors, semaphorins belong to the semaphorin superfamily whose defining feature is the existence of a conserved domain: the semaphorin domain. This domain of more than 500 amino acids located at the mature protein N-terminus was first identified by
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Embryology and Anatomy of Hypospadiasr spatial and temporal control of guidance signaling by extracellular cues. In addition, lipid rafts may also function in other aspects of axonal growth and guidance, including spatial and temporal regulation of adhesion, cytoskeletal dynamics, and growth cone motility. Further elucidating how membr
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Book 2007ofound evolution ofour knowledge ofthe molecular identityofthe guidance cues together with their interactions and signalling pathways occurred over the past ten years. This book proposes an exhaustive and updated view ofthe current knowledge ofthe molecular and cellular mechanisms ensuring axon grow
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Netrins and Their receptors,some cases, DCC. The netrin-G proteins bind NGLs (netrin G ligands), single pass transmembrane proteins unrelated to either DCC or the UNC5 homologues. Netrin function is not limited to the developing CNS midline. Various netrins direct cell and axon migration throughout the embryonic CNS, and in so
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