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海马体CA1神经元中的联合突触可塑性对未配对的突触前活动不敏感。

Associative synaptic plasticity in hippocampal CA1 neurons is not sensitive to unpaired presynaptic activity.

作者信息

Buonomano D V, Merzenich M M

机构信息

Keck Center for Integrative Neuroscience, University of California, San Francisco 94143, USA.

出版信息

J Neurophysiol. 1996 Jul;76(1):631-6. doi: 10.1152/jn.1996.76.1.631.

Abstract
  1. Hebbian or associative synaptic plasticity has been proposed to play an important role in learning and memory. Whereas many behaviorally relevant stimuli are time-varying, most experimental and theoretical work on synaptic plasticity has focused on stimuli or induction protocols without temporal structure. Recent theoretical studies have suggested that associative plasticity sensitive to only the conjunction of pre- and postsynaptic activity is not an effective learning rule for networks required to learn time-varying stimuli. Our goal in the current experiment was to determine whether associative long-term potentiation (LTP) is sensitive to temporal structure. We examined whether the presentation of unpaired presynaptic pulses in addition to paired pre- and postsynaptic activity altered the induction of associative LTP. 2. By using intracellular recordings from CA1 pyramidal cells, associative long-term potentiation (LTP) was induced in a control pathway by pairing a single presynaptic pulse with postsynaptic depolarization every 5 s (50-70 x). The experimental pathway received the same training, with additional unpaired presynaptic pulses delivered in close temporal proximity, either after or before associative pairing. Five separate sets of experiments were performed with intervals of -200, -50, +50, +200, or +800 ms. Negative intervals indicate that the unpaired presynaptic pulse was presented before the depolarizing pulse. Our results showed that the presence of unpaired presynaptic pulses, occurring either before or after pairing, did not significantly alter the magnitude of LTP. 3. The experimental design permitted an analysis of whether changes in paired-pulse facilitation (PPF) occur as a result of associative LTP. The average degree of PPF was the same before and after LTP. However, there was a significant inverse correlation between the initial degree of PPF and the degree of PPF after LTP. There was no relationship between the change in PPF, and whether the first or second pulse had been paired with depolarization. 4. These results indicate that the presence of unpaired presynaptic pulses does not alter the induction of synaptic plasticity, suggesting that plasticity of the Schaffer collateral-CA1 synapse is primarily conjunctive rather than correlative.
摘要
  1. 赫布型或联合性突触可塑性被认为在学习和记忆中起重要作用。尽管许多与行为相关的刺激是随时间变化的,但大多数关于突触可塑性的实验和理论研究都集中在没有时间结构的刺激或诱导方案上。最近的理论研究表明,仅对突触前和突触后活动的联合敏感的联合可塑性对于学习随时间变化的刺激的网络来说不是一种有效的学习规则。我们当前实验的目标是确定联合性长时程增强(LTP)是否对时间结构敏感。我们研究了除了配对的突触前和突触后活动之外,未配对的突触前脉冲的呈现是否会改变联合性LTP的诱导。2. 通过使用CA1锥体细胞的细胞内记录,在对照通路中,通过每5秒将单个突触前脉冲与突触后去极化配对(50 - 70次)来诱导联合性长时程增强(LTP)。实验通路接受相同的训练,在联合配对之后或之前,在紧密的时间间隔内施加额外的未配对突触前脉冲。进行了五组独立的实验,间隔分别为 - 200、 - 50、 + 50、 + 200或 + 800毫秒。负间隔表示未配对的突触前脉冲在去极化脉冲之前呈现。我们的结果表明,未配对突触前脉冲的存在,无论出现在配对之前还是之后,都不会显著改变LTP的幅度。3. 该实验设计允许分析联合性LTP是否会导致配对脉冲易化(PPF)的变化。LTP前后PPF的平均程度相同。然而,LTP之前PPF的初始程度与LTP之后PPF的程度之间存在显著的负相关。PPF的变化与第一个或第二个脉冲是否与去极化配对之间没有关系。4. 这些结果表明,未配对突触前脉冲的存在不会改变突触可塑性的诱导,这表明海马体联合纤维 - CA1突触的可塑性主要是联合性的而非相关性的。

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