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Abnormal synchronization patterns in the electrical stimulation-contractile response coupling decrease with noise

机译:电刺激 - 收缩响应耦合耦合的异常同步模式随着噪声减少

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Synchronization theory predicts that if an oscillator interacts with a rhythmical external force, then it should react to a rhythmical force by adjusting its frequency. Furthermore, noise is present in nature, and it affects the nervous and cardiovascular systems. In this paper, we analyze the heart as an oscillator, where noisy periodic electrical stimulation can be regarded as an external forcing. This study aimed to investigate, from an experimental point of view, whether noise can induce synchronization of higher order in the mechanical heart response. A Langendorff heart preparation was used to obtain two variables of the mechanical response, intensity of contractile force and heart rate. The experiments show frequency locking in the electrical stimulation-contractile response coupling with and without noise induced. The role of noise in the response of effector organs invites further investigation.
机译:同步理论预测,如果振荡器以有节奏的外力相互作用,则它应该通过调节其频率对节奏力作出反应。 此外,噪声本质上存在,并且它会影响神经和心血管系统。 在本文中,我们将心脏分析为振荡器,其中嘈杂的周期性电刺激可以被视为外部迫使。 本研究旨在从实验的角度来调查噪声是否可以在机械心脏反应中诱导高阶的同步。 使用Langendorff心脏制剂来获得两种机械响应的变量,收缩力和心率的强度。 实验表明,频刺刺激 - 收缩响应耦合耦合耦合和没有噪声的频率锁定。 噪声在效应器官的反应中的作用邀请进一步调查。

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