首页> 外文期刊>The Journal of Physiology >CA1 pyramidal to basket and bistratified cell EPSPs: dual intracellular recordings in rat hippocampal slices.
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CA1 pyramidal to basket and bistratified cell EPSPs: dual intracellular recordings in rat hippocampal slices.

机译:CA1锥体到篮子和双分层的细胞EPSPs:大鼠海马切片中的双重细胞内记录。

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1. Dual intracellular recordings in the CA1 region of adult rat hippocampal slices and biocytin filling of synaptically connected cells were used to study the excitatory postsynaptic potentials (EPSPs) elicited in basket (n = 7) and bistratified interneurones (n = 7) by action potentials activated in simultaneously recorded pyramidal cells. 2. Interneurones could be subdivided according to their electrophysiological properties into classical fast spiking, burst firing, regular spiking and fast spiking cells with a rounded spike after-hyperpolarization. These physiological classes did not, however, correlate with morphological type. EPSPs were not recorded in regular spiking cells. 3. Average EPSP amplitudes were larger in bistratified cells (range, 0.5-9 mV) than in basket cells (range, 0. 15-3.6 mV) and the probability of obtaining a pyramidal cell-interneurone EPSP was also higher for the bistratified cells (1:7) than for the basket cells (1:22). EPSP 10-90 % rise times in bistratified cells (0.7-2 ms) and their widths at half-amplitude (3. 9-11.2 ms) were slightly longer than in basket cells (rise times, 0.4-1.6 ms; half-widths, 2.2-9.7 ms). 4. The majority of these EPSPs (6 of 8 tested) increased in amplitude and duration with postsynaptic depolarization, although in two (of 4) basket cells the voltage relation was conventional. 5. All EPSPs tested in both basket (n = 7) and bistratified cells (n = 5) decreased in amplitude with repetitive presynaptic firing. The average amplitudes of second EPSPs elicited within 15 ms of the first were between 34 and 94 % of the average amplitude of the first EPSP. Third and fourth EPSPs in brief trains were further depressed. This depression was associated with an increase in the incidence of apparent failures of transmission indicating a presynaptic locus.
机译:1.使用成年大鼠海马切片CA1区的双重细胞内记录和突触连接细胞的生物素填充来研究通过作用在篮子(n = 7)和双分层interneurones(n = 7)中引起的兴奋性突触后电位(EPSP)。同时记录的锥体细胞中激活的电位。 2.中间神经元可根据其电生理特性细分为经典的快速尖峰,爆发放电,规则尖峰和快速尖峰细胞,超极化后为圆形尖峰。但是,这些生理类别与形态类型不相关。在常规的尖峰细胞中未记录到EPSP。 3.在两层细胞中,平均EPSP振幅(范围为0.5-9 mV)比在篮子细胞中(范围为0. 15-3.6 mV)要大。对于两层细胞,获得锥体细胞-中间神经元EPSP的可能性也更高。 (1:7)而非篮筐(1:22)。在两层细胞中,EPSP的上升时间为10-90%(0.7-2毫秒),其在半振幅时的宽度(3. 9-11.2毫秒)比在篮子中的细胞稍长(上升时间为0.4-1.6毫秒;半宽度,2.2-9.7毫秒)。 4.这些EPSP中的大多数(测试的8个中的6个)随着突触后去极化的幅度和持续时间增加,尽管在两个(4个)篮式电池中,电压关系是常规的。 5.在篮子(n = 7)和双分层细胞(n = 5)中测试的所有EPSP的幅度随着重复突触前放电而降低。在第一个EPSP的15毫秒内引发的第二个EPSP的平均幅度在第一个EPSP的平均幅度的34%至94%之间。简短列车中的第三和第四EPSP进一步受到压制。这种抑郁症与明显的传递失败的发生率增加有关,表明出现突触前的基因座。

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