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Distinct frequency preferences of different types of rat hippocampal neurones in response to oscillatory input currents

机译:不同类型的大鼠海马神经元对振荡输入电流的不同频率偏好

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摘要

class="enumerated" style="list-style-type:decimal">Coherent network oscillations in several distinct frequency bands are seen in the hippocampus of behaving animals. To investigate how different neuronal types within this network respond to oscillatory inputs we made whole-cell current clamp recordings from three different types of neurones in the CA1 region of rat hippocampal slices: pyramidal cells, fast-spiking interneurones and horizontal interneurones, and recorded their response to sinusoidal inputs at physiologically relevant frequencies (1-100 Hz).Pyramidal neurones showed firing preference to inputs at theta frequencies (range 2-7 Hz; n = 30). They showed subthreshold resonance in the same frequency range (2-7 Hz; mean 4.1 ± 0.4 Hz; n = 19).Interneurones differed in their firing properties. Horizontal interneurones in the stratum oriens showed firing preference to inputs at theta frequencies (range 1.5-10 Hz; n = 10). These interneurones also showed resonance at low frequencies (range 1-5 Hz; mean 2.4 ± 0.5 Hz; n = 7). In contrast, fast-spiking interneurones with cell bodies in the pyramidal cell layer fired preferentially at input frequencies in the gamma band (range 30-50 Hz; n = 10/12). These interneurones showed resonance at beta-gamma frequencies (10-50 Hz; mean 26 ± 5 Hz; n = 7/8).Thus, in the hippocampus, different types of neurones have distinct frequency preferences. Therefore, in the CA1 layer of the hippocampal network, a compound oscillatory input may be segregated into distinct frequency components which are processed locally by distinct types of neurones.
机译:class =“ enumerated” style =“ list-style-type:decimal”> <!-list-behavior =枚举前缀-word = mark-type = decimal max-label-size = 0-> 在行为动物的海马体中看到了几个不同频带的相干网络振荡。为了研究该网络中不同的神经元类型如何响应振荡输入,我们从大鼠海马切片CA1区的三种不同类型的神经元(锥体细胞,快速突触的中间神经元和水平的中间神经元)制作了全细胞电流钳记录,并记录了它们在生理相关频率(1-100 Hz)时对正弦输入有反应。 金字塔神经元在theta频率(范围2-7 Hz; n = 30)上显示出对发射的偏好。他们在相同的频率范围内(2-7 Hz;平均4.1±0.4 Hz; n = 19)显示亚阈值共振。 中间神经元的发射特性不同。在θ频率(范围1.5-10 Hz; n = 10)下,原始层中的水平中间神经元对输入信号具有发射优先权。这些中间神经元还显示出在低频下的共振(范围1-5 Hz;平均2.4±0.5 Hz; n = 7)。相比之下,锥体细胞层中具有细胞体的快突中间神经元优先以伽马波段(范围为30-50 Hz; n = 10/12)的输入频率发射。这些中间神经元在β-γ频率(10-50 Hz;平均26±5 Hz; n = 7/8)处显示共振。 因此,在海马中,不同类型的神经元具有不同的频率偏好。因此,在海马网络的CA1层中,复合振荡输入可能会分离为不同的频率分量,这些频率分量会由不同类型的神经元进行局部处理。

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