首页> 外文OA文献 >Synaptic plasticity in rat hippocampal slice cultures: local 'Hebbian' conjunction of pre- and postsynaptic stimulation leads to distributed synaptic enhancement.
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Synaptic plasticity in rat hippocampal slice cultures: local 'Hebbian' conjunction of pre- and postsynaptic stimulation leads to distributed synaptic enhancement.

机译:大鼠海马切片培养物中的突触可塑性:突触前和突触后刺激的局部“ Hebbian”结合导致分布式突触增强。

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摘要

A central theme in neurobiology is the search for the mechanisms underlying learning and memory. Since the seminal work, first of Cajal and later of Hebb, the synapse is thought to be the basic "storing unit." Hebb proposed that information is stored by correlation: synapses between neurons, which are often coactive, are enhanced. Several recent findings suggest that such a mechanism is indeed operative in the central nervous system. Pairing of activity on presynaptic fibers with strong postsynaptic depolarization results in synaptic enhancement. While there is substantial evidence in favor of a postsynaptic locus for detection of the synchronous pre- and postsynaptic event and subsequent initiation of synaptic enhancement, the locus of this enhancement and its ensuing persistence is still disputed: both pre- and postsynaptic contributions have been suggested. In all previous studies, the enhancement was presumed to be specific to the synapses where synchronous pre- and postsynaptic stimulation was applied. We report here that two recording techniques--optical recording, using voltage-sensitive dyes, and double intracellular recordings--reveal that synaptic enhancement is not restricted to the stimulated cell. Although we paired single afferent volleys with intracellular stimulation confined to one postsynaptic cell, we found that strengthening also occurred on synapses between the stimulated presynaptic fibers and neighboring cells. This suggests that synaptic enhancement by the "paired-stimulation paradigm" is not local on the presynaptic axons and that, in fact, the synapses of many neighboring postsynaptic cells are enhanced.
机译:神经生物学的中心主题是寻找学习和记忆的基础机制。由于开创性的工作,首先是Cajal,后来是Hebb,突触被认为是基本的“存储单元”。赫布提出,信息是通过相关性来存储的:神经元之间的突触通常是共同活跃的,因此可以增强。最近的一些发现表明,这种机制确实在中枢神经系统中起作用。突触前纤维上的活性与强烈的突触后去极化配对会导致突触增强。尽管有充分的证据支持突触后位点检测同步突触前和突触后事件以及随后启动突触增强,但这种增强的位点及其随后的持久性仍然存在争议:已经提出了突触前和突触后的贡献。在所有以前的研究中,增强被认为是特定于应用同步突触前和突触后刺激的突触。我们在这里报告了两种记录技术-使用电压敏感染料的光学记录和双重细胞内记录-揭示了突触增强并不限于受刺激的细胞。尽管我们将单传入截击与限制在一个突触后细胞内的细胞内刺激配对,但我们发现在刺激的突触前纤维和邻近细胞之间的突触上也发生了增强。这表明通过“成对刺激范例”进行的突触增强并不位于突触前轴突上,并且实际上,许多相邻突触后细胞的突触被增强。

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