Popov V I, Deev A A, Klimenko O A, Kraev l V, Kuz'minykh S B, Medvedev N I, Patrushev I V, Popov R V, Rogachevskii V V, Khutsiyan S S, Stewart M G, Fesenko E E
Institute of Cell Biophysics, Russian Academy of Sciences.
Neurosci Behav Physiol. 2005 May;35(4):333-41. doi: 10.1007/s11055-005-0030-4.
Published data are reviewed along with our own data on synaptic plasticity and rearrangements of synaptic organelles in the central nervous system. Contemporary laser scanning and confocal microscopy techniques are discussed, along with the use of serial ultrathin sections for in vivo and in vitro studies of dendritic spines, including those addressing relationships between morphological changes and the efficiency of synaptic transmission, especially in conditions of the long-term potentiation model. Different categories of dendritic spines and postsynaptic densities are analyzed, as are the roles of filopodia in originating spines. The role of serial ultrathin sections for unbiased quantitative stereological analysis and three-dimensional reconstruction is assessed. The authors' data on the formation of more than two synapses on single mushroom spines on neurons in hippocampal field CA1 are discussed. Analysis of these data provides evidence for new paradigms in both the organization and functioning of synapses.
我们回顾了已发表的数据以及我们自己关于中枢神经系统中突触可塑性和突触细胞器重排的数据。讨论了当代激光扫描和共聚焦显微镜技术,以及使用连续超薄切片对树突棘进行体内和体外研究,包括那些探讨形态变化与突触传递效率之间关系的研究,特别是在长期增强模型的条件下。分析了不同类别的树突棘和突触后致密物,以及丝状伪足在棘形成中的作用。评估了连续超薄切片在无偏倚定量立体分析和三维重建中的作用。讨论了作者关于海马体CA1区神经元单个蘑菇状棘上形成两个以上突触的数据。对这些数据的分析为突触的组织和功能方面的新范式提供了证据。