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Coincidence detection of convergent perforant path and mossy fibre inputs by CA3 interneurons

机译:CA3中间神经元对收敛的射孔路径和生苔纤维输入的重合检测

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摘要

We performed whole-cell recordings from CA3 s. radiatum (R) and s. lacunosum-moleculare (L-M) interneurons in hippocampal slices to examine the temporal aspects of summation of converging perforant path (PP) and mossy fibre (MF) inputs. PP EPSPs were evoked from the s. lacunosum-moleculare in area CA1. MF EPSPs were evoked from the medial extent of the suprapyramidal blade of the dentate gyrus. Summation was strongly supralinear when examining PP EPSP with MF EPSP in a heterosynaptic pair at the 10 ms ISI, and linear to sublinear at longer ISIs. This pattern of nonlinearities suggests that R and L-M interneurons act as coincidence detectors for input from PP and MF. Summation at all ISIs was linear in voltage clamp mode demonstrating that nonlinearities were generated by postsynaptic voltage-dependent conductances. Supralinearity was not detected when the first EPSP in the pair was replaced by a simulated EPSP injected into the soma, suggesting that the conductances underlying the EPSP boosting were located in distal dendrites. Supralinearity was selectively eliminated with either Ni2+ (30 μm), mibefradil (10 μm) or nimodipine (15 μm), but was unaffected by QX-314. This pharmacological profile indicates that supralinearity is due to recruitment of dendritic T-type Ca2+channels by the first subthreshold EPSP in the pair. Results with the hyperpolarization-activated (Ih) channel blocker ZD 7288 (50 μm) revealed that Ih restricted the time course of supralinearity for coincidently summed EPSPs, and promoted linear to sublinear summation for asynchronous EPSPs. We conclude that coincidence detection results from the counterbalanced activation of T-type Ca2+ channels and inactivation of Ih.
机译:我们从CA3进行了全细胞记录。半径(R)和s。海马切片中的泪小分子(L-M)中间神经元,用于检查融合的穿孔路径(PP)和苔藓纤维(MF)输入总和的时间方面。 PP EPSP从s引起。 CA1区的腔菌分子。 MF EPSPs从齿状回的蛛网膜上方刀片的内侧区域诱发。当在10 ms ISI上以异突触对检查PP EPSP和MF EPSP时,求和是极度超线性的,而在较长ISI时,线性与亚线性是相加的。这种非线性模式表明R和L-M中间神经元充当PP和MF输入的巧合检测器。在电压钳模式下,所有ISI的求和都是线性的,这表明非线性是由突触后电压依赖性电导产生的。当将一对中的第一个EPSP替换为注入体中的模拟EPSP时,未检测到超线性,这表明EPSP增强作用背后的电导位于远端树突中。用Ni 2 + (30μm),米贝地尔(10μm)或尼莫地平(15μm)选择性消除超线性,但不受QX-314的影响。该药理学特征表明超线性是由于该对中的第一个亚阈值EPSP募集了树突状T型Ca 2 + 通道。超极化激活(Ih)通道阻滞剂ZD 7288(50μm)的结果表明,Ih限制了同时求和的EPSP的超线性时间过程,并促进了异步EPSP的线性至亚线性求和。我们得出结论,巧合检测是由T型Ca 2 + 通道的平衡激活和Ih的失活导致的。

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