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首页> 外文期刊>The Journal of Mathematical Neuroscience >Entrainment Ranges for Chains of Forced Neural and Phase Oscillators
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Entrainment Ranges for Chains of Forced Neural and Phase Oscillators

机译:强迫神经和相位振荡器链的夹带范围

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Sensory input to the lamprey central pattern generator (CPG) for locomotion is known to have a significant role in modulating lamprey swimming. Lamprey CPGs are known to have the ability to entrain to a bending stimulus, that is, in the presence of a rhythmic signal, the CPG will change its frequency to match the stimulus frequency. Bending experiments in which the lamprey spinal cord has been removed and mechanically bent back and forth at a single point have been used to determine the range of frequencies that can entrain the CPG rhythm. First, we model the lamprey locomotor CPG as a chain of neural oscillators with three classes of neurons and sinusoidal forcing representing edge cell input. We derive a phase model using the connections described in the neural model. This results in a simpler model yet maintains some properties of the neural model. For both the neural model and the derived phase model, entrainment ranges are computed for forcing at different points along the chain while varying both intersegmental coupling strength and the coupling strength between the forcer and chain. Entrainment ranges for chains with nonuniform intersegmental coupling asymmetry are larger when forcing is applied to the middle of the chain than when it is applied to either end, a result that is qualitatively similar to the experimental results. In the limit of weak coupling in the chain, the entrainment results of the neural model approach the entrainment results for the derived phase model. Both biological experiments and the robustness of non-monotonic entrainment ranges as a function of the forcing position across different classes of CPG models with nonuniform asymmetric coupling suggest that a specific property of the intersegmental coupling of the CPG is key to entrainment.
机译:已知输入到七rey鳗中央模式发生器(CPG)进行运动的感觉输入在调节七lamp鳗游泳中具有重要作用。众所周知,七rey鳗CPG具有夹带弯曲刺激的能力,也就是说,在有节奏的信号的存在下,CPG将改变其频率以匹配刺激频率。弯曲实验中,已去除了七lamp鳗的脊髓并在单个点上进行机械性来回弯曲,以确定可携带CPG节奏的频率范围。首先,我们将七lamp鳗运动型CPG建模为具有三类神经元和代表边缘细胞输入的正弦强迫的神经振荡器链。我们使用神经模型中描述的连接导出相位模型。这导致模型更简单,但仍保留了神经模型的某些属性。对于神经模型和导出的相位模型,都计算了夹带范围,以强制沿着链的不同点,同时改变段间的耦合强度和施力器与链之间的耦合强度。在链的中间施加力时,段间耦合不对称不均匀的链的夹带范围要大于在链的两端施加时的夹带范围,其结果在质量上与实验结果相似。在链中弱耦合的极限下,神经模型的携带结果接近导出相位模型的携带结果。生物学实验和非单调夹带范围的鲁棒性均是具有不均匀非对称耦合的不同类别CPG模型上强迫位置的函数,表明CPG的节间耦合的特定性质是夹带的关键。

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