首页> 美国卫生研究院文献>Frontiers in Neuroscience >Spatial Noise in Coupling Strength and Natural Frequency within a Pacemaker Network; Consequences for Development of Intestinal Motor Patterns According to a Weakly Coupled Phase Oscillator Model
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Spatial Noise in Coupling Strength and Natural Frequency within a Pacemaker Network; Consequences for Development of Intestinal Motor Patterns According to a Weakly Coupled Phase Oscillator Model

机译:起搏器网络中耦合强度和固有频率的空间噪声;根据弱耦合相位振荡器模型发展肠道运动模式的后果

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摘要

Pacemaker activities generated by networks of interstitial cells of Cajal (ICC), in conjunction with the enteric nervous system, orchestrate most motor patterns in the gastrointestinal tract. It was our objective to understand the role of network features of ICC associated with the myenteric plexus (ICC-MP) in the shaping of motor patterns of the small intestine. To that end, a model of weakly coupled oscillators (oscillators influence each other's phase but not amplitude) was created with most parameters derived from experimental data. The ICC network is a uniform two dimensional network coupled by gap junctions. All ICC generate pacemaker (slow wave) activity with a frequency gradient in mice from 50/min at the proximal end of the intestine to 40/min at the distal end. Key features of motor patterns, directly related to the underlying pacemaker activity, are frequency steps and dislocations. These were accurately mimicked by reduction of coupling strength at a point in the chain of oscillators. When coupling strength was expressed as a product of gap junction density and conductance, and gap junction density was varied randomly along the chain (i.e., spatial noise) with a long-tailed distribution, plateau steps occurred at pointsof low density. As gap junction conductance was decreased, the number of plateaus increased, mimicking the effect of the gap junction inhibitor carbenoxolone. When spatial noise was added to the natural interval gradient, as gap junction conductance decreased, the number of plateaus increased as before but in addition the phase waves frequently changed direction of apparent propagation, again mimicking the effect of carbenoxolone. In summary, key features of the motor patterns that are governed by pacemaker activity may be a direct consequence of biological noise, specifically spatial noise in gap junction coupling and pacemaker frequency.
机译:由Cajal的间质细胞网络(ICC)产生的起搏器活动与肠神经系统结合,可协调胃肠道中的大多数运动模式。我们的目标是了解与肌间神经丛(ICC-MP)相关的ICC网络功能在小肠运动模式形成中的作用。为此,创建了一个弱耦合振荡器模型(振荡器会影响彼此的相位,但不会影响振幅),其大多数参数均来自实验数据。 ICC网络是通过间隙连接耦合的统一二维网络。在小鼠中,所有ICC都会产生起搏器(慢波)活动,其频率梯度从肠的近端的50 / min到远端的40 / min。与基本起搏器活动直接相关的运动模式的关键特征是频率阶跃和错位。通过降低振荡器链中某一点的耦合强度,可以精确地模拟它们。当将耦合强度表示为缝隙连接密度和电导的乘积,并且缝隙连接密度沿着链以长尾分布随机变化(即空间噪声)时,在低密度点处发生平稳阶跃。随着间隙连接电导的降低,平台的数目增加,从而模仿了间隙连接抑制剂羧苄酮的作用。当将空间噪声添加到自然间隔梯度中时,随着间隙连接电导的减小,平台的数量与以前一样增加,但是此外,相波经常改变视在传播的方向,再次模仿了羧苄酮的作用。总之,受起搏器活动支配的运动模式的关键特征可能是生物噪声的直接结果,特别是间隙连接耦合和起搏器频率中的空间噪声。

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