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Dorsal-ventral differentiation of short-term synaptic plasticity in rat CA1 hippocampal region.

机译:大鼠CA1海马区短期突触可塑性的背腹面分化。

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摘要

Two forms of short-term synaptic plasticity (STP), paired-pulse facilitation (PPF) and frequency potentiation (FP) of CA1 field excitatory postsynaptic potentials (EPSP) to afferent stimulation were compared in slices taken from the dorsal and ventral parts of rat hippocampus. While dorsal slices showed significant PPF at all interpulse intervals (20-1400 ms, 80% at 40 ms), PPF in ventral slices was substantially weaker at intervals shorter than 100 ms (19% at 40 ms) and nil at longer intervals. While dorsal slices showed substantial FP at frequencies 1-40 Hz and frequency depression at 50-100 Hz, ventral slices showed only a much smaller potentiation at 1 Hz and substantial depression at 20-100 Hz. Decreasing [Ca(2+)](o) from 2 to 1 and 0.5 mM substantially reduced the baseline EPSPs in both groups of slices but its effect on PPF was greater in ventral slices. On the contrary when [Ca(2+)](o) was increased to 5 mM only dorsal slices showed an enhancement of baseline EPSP. It is concluded that ventral hippocampus CA1 area has a specific deficit in STP, which is related to the important presynaptic role of calcium and is consistent with a relatively higher transmitter release probability.
机译:在大鼠背侧和腹侧部分的切片中比较了两种形式的短期突触可塑性(STP),成对脉冲促进(PPF)和CA1场兴奋性突触后电位(EPSP)对传入刺激的频率增强(FP)海马。背侧切片在所有脉冲间隔(20-1400 ms,在40 ms时为80%)均显示出显着的PPF,而腹侧切片中的PPF在短于100 ms的间隔(在40 ms时为19%)明显较弱,而在较长的间隔则为零。背面切片在1-40 Hz频率下显示出显着的FP,在50-100 Hz的频率下显示出凹陷,而在1 Hz的腹侧切片仅表现出较小的增强作用,而20-100 Hz时则显示出明显的凹陷。将[Ca(2 +)](o)从2减少到1和0.5 mM会大大降低两组切片的基线EPSP,但在腹侧切片中对PPF的影响更大。相反,当[Ca(2 +)](o)增加到5 mM时,仅背侧切片显示基线EPSP增强。结论是腹侧海马CA1区STP有一个特定的缺陷,这与钙的重要突触前作用有关,并且与相对较高的递质释放概率相符。

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