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首页> 外文期刊>Journal of Computational Electronics >Interplay between channel and shot noise at the onset of spiking activity in neural membranes
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Interplay between channel and shot noise at the onset of spiking activity in neural membranes

机译:在神经膜中尖峰活动开始的信道和射击噪声之间的相互作用

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The role played by ion channel noise and ion shot noise around the threshold conditions for spiking activity in biological membranes is studied by means of a stochastic model based on the Hodgkin-Huxley equations, considering membrane voltage-dependent gating channels for sodium and potassium cations, and leakage channels. Ion channel noise, that is, the noise linked to the random opening and closing of the ion channels, is included by means of Langevin sources. Ion shot noise, associated with the random passage of ions through the cell membrane, is considered by using the Gillespie's method, in terms of the probabilities for different ions to cross the membrane. The threshold for spiking activity is reached by applying increasing values of an external excitation I_(app) in a large membrane patch 5, for which the strength of channel noise is insufficient for the onset of spikes in the absence of I_(app). On the other hand, since by decreasing S the strength of both noise sources increases, spiking activity is also achieved for small enough values of S when I_(app) = 0. The noise behavior of this biological system is analyzed in terms of the autocorrelation function and the spectral density of the membrane voltage fluctuations. Even if ion shot noise is typically considered as negligible when other electrical sources of neural noise are taken into account, the results indicate that, particularly around the onset of instabilities, the signature of shot noise, by the interplay with channel noise, is evident in the spectral density of the membrane voltage fluctuations.
机译:通过基于Hodgkin-Huxley方程的随机模型研究了离子通道噪声和离子射噪声围绕生物膜中旋转活性的阈值条件围绕的阈值条件,考虑到钠和钾阳离子的膜电压依赖性栅极,和泄漏通道。离子通道噪声,即链接到离子通道的随机打开和关闭的噪声,包括Langevin来源。通过使用Gillespie的方法考虑与通过细胞膜随机通过离子的随机通道相关联的离子射击噪声,从而在不同离子穿过膜的概率方面考虑。通过在大膜贴片5中应用外部激励I_(APP)的增加值来达到尖刺活性的阈值,其中信道噪声的强度在不存在I_(APP)的情况下尖峰的开始不足。另一方面,由于通过降低噪声源的强度来增加,因此对于i_(app)= 0时,Spiking活动也可以获得足够的足够的S值(APP)= 0.在自相关的方面分析了该生物系统的噪声行为膜电压波动的功能和光谱密度。即使考虑到其他电子噪声的其他电源的离子射击噪声通常被认为是可忽略的,结果表明,特别是围绕不稳定性的发作,通过通道噪声的相互作用,射门噪声的签名是明显的膜电压波动的光谱密度。

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