There has been an explosion of new information on the neurobiology of dendritic spines in synaptic signaling, integration, and plasticity. Novel imaging and analytical techniques have provided important new insights into dendritic spine structure and function. Results are accumulating across many disciplines, and a step toward consolidating some of this work has resulted in Dendritic Spines of the Hippocampus. Leaders in the field provide a discussion at the level of advanced under-graduates, with sufficient detail to be a contemporary resource for research scientists. Critical reviews are presented on topics ranging from spine structure, formation, and maintenance, to molecular composition, plasticity, and the role of spines in learning and memory. Dendritic Spines of the Hippocampus provides a timely discussion of our current understanding of form and function at these excitatory synapses. We asked authors to include areas of controversy in their papers so as to distinguish results that are generally agreed upon from those where multiple interpretations are possible. We thank the contributors for their insights and thoughtful discussions. In this paper we provide background on the structure, composition, function, development, plasticity, and pathology of hippocampal dendritic spines. In addition, we highlight where each of these subjects will be elaborated upon in subsequent papers of this special issue of Hippocampus.

译文

关于突触信号,整合和可塑性中树突棘的神经生物学的新信息激增。新颖的成像和分析技术为树突状脊柱的结构和功能提供了重要的新见解。结果在许多学科中都在积累,并且朝着巩固某些工作的方向迈出了一步,导致了海马的树突棘。该领域的领导者在高级本科毕业生的水平上进行了讨论,并提供了足够的细节,可以成为研究科学家的当代资源。从脊柱的结构,形成和维护到分子组成,可塑性以及脊柱在学习和记忆中的作用等主题都提出了重要的评论。海马的树突棘及时讨论了我们目前对这些兴奋性突触的形式和功能的理解。我们要求作者在论文中包括有争议的领域,以便将普遍同意的结果与可能进行多种解释的结果区分开。我们感谢贡献者的见解和深思熟虑的讨论。在本文中,我们提供了有关海马树突棘的结构,组成,功能,发育,可塑性和病理的背景。此外,我们将在本《海马》特刊的后续论文中重点介绍这些主题中的每个主题。

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