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首页> 外文期刊>Journal of Neurophysiology >Dendrite-to-soma input/output function of continuous time-varying signals in hippocampal CA1 pyramidal neurons.
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Dendrite-to-soma input/output function of continuous time-varying signals in hippocampal CA1 pyramidal neurons.

机译:海马CA1锥体神经元中连续时变信号的树突到体输入/输出功能。

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We examined how hippocamal CA1 neurons process complex time-varying inputs that dendrites are likely to receive in vivo. We propose a functional model of the dendrite-to-soma input/output relationship that combines temporal integration and static-gain control mechanisms. Using simultaneous dual whole cell recordings, we injected 50 s of subthreshold and suprathreshold zero-mean white-noise current into the primary dendritic trunk along the proximal 2/3 of stratum radiatum and measured the membrane potential at the soma. Applying a nonlinear system-identification analysis, we found that a cascade of a linear filter followed by an adapting static-gain term fully accounted for the nonspiking input/output relationship between the dendrite and soma. The estimated filters contained a prominent band-pass region in the 1- to 10-Hz frequency range that remained constant as a function of stimulus variance. The gain of the dendrite-to-soma input/output relationship, in contrast, varied as a function of stimulus variance. When the contribution of the voltage-dependent current I(h) was eliminated, the estimated filters lost their band-pass properties and the gain regulation was substantially altered. Our findings suggest that the dendrite-to-soma input/output relationship for proximal apical inputs to CA1 pyramidal neurons is well described as a band-pass filter in the theta frequency range followed by a gain-control nonlinearity that dynamically adapts to the statistics of the input signal.
机译:我们研究了海马CA1神经元如何处理树突可能在体内接受的复杂时变输入。我们提出了树突与体的输入/输出关系的功能模型,该模型结合了时间积分和静态增益控制机制。使用同时进行的双全细胞记录,我们沿着放射线近端2/3向近端初级树突状干细胞注入了50 s的阈下和阈上零均值白噪声电流,并测量了体细胞的膜电位。应用非线性系统识别分析,我们发现线性滤波器的级联后接自适应的静态增益项,充分说明了枝晶和体细胞之间的非尖峰输入/输出关系。估计的滤波器包含一个在1至10 Hz频率范围内的显着带通区域,该区域根据刺激方差保持恒定。相反,枝状体与体的输入/输出关系的增益随刺激方差的变化而变化。当消除了电压相关电流I(h)的影响时,估计的滤波器失去了其带通特性,并且增益调整率发生了重大变化。我们的发现表明,CA1锥体神经元近端根尖输入的树突与体细胞输入/输出关系被很好地描述为θ频率范围内的带通滤波器,其后是增益控制非线性,可动态地适应于输入信号。

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