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Flexible microelectrode arrays to interface epicardial electrical signals with intracardial calcium transients in zebrafish hearts

机译:灵活的微电极阵列以界面斑马鱼心中具有外膜钙瞬变的外膜电气信号

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摘要

The zebrafish (Danio rerio) is an emerging genetic model for regenerative medicine. In humans, myocardial infarction results in the irreversible loss of cardiomyocytes. However, zebrafish hearts fully regenerate after a 20% ventricular resection, without either scarring or arrhythmias. To study this cardiac regeneration, we developed implantable flexible multi-microelectrode membrane arrays that measure the epicardial electrocardiogram signals of zebrafish in real-time. The microelectrode electrical signals allowed for a high level of both temporal and spatial resolution (~20 μm), and the signal to noise ratio of the epicardial ECG was comparable to that of surface electrode ECG (7.1 dB vs. 7.4 dB, respectively). Processing and analysis of the signals from the microelectrode array demonstrated distinct ECG signals: namely, atrial conduction (P waves), ventricular contraction (QRS), and ventricular repolarization (QT interval). The electrical signals were in synchrony with optically measured Calcium concentration gradients in terms of d[Ca2+]/dt at both whole heart and tissue levels. These microelectrodes therefore provide a real-time analytical tool for monitoring conduction phenotypes of small vertebral animals with a high temporal and spatial resolution.
机译:斑马鱼(Danio Rerio)是再生医学的新兴遗传模型。在人类中,心肌梗塞导致心肌细胞不可逆转的损失。然而,斑马鱼的心完全再生后20%的心室切除,无任何疤痕或心律不齐。为了研究这种心脏再生,我们开发了可植入的柔性多微电极膜阵列,该阵列实时测量斑马鱼的心外心电图信号。允许的微电极电信号允许时间和空间分辨率(〜20μm),并且心外膜ECG的信噪比与表面电极ECG(分别为7.1dB与7.4dB)相当。处理,并从微电极阵列的信号的分析表明不同的ECG信号,即:心房传导(P波),心室收缩(QRS)和心室复极(QT间隔)。电信号分别与光学测定钙浓度梯度同步在d而言的[Ca 2 + ]在两个整个心脏和组织水平/ DT。因此,这些微电极提供了用于监测具有高时和空间分辨率的小椎体动物的传导表型的实时分析工具。

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