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首页> 外文期刊>The Journal of Physiology >Macro-micro imaging of cardiac-neural circuits in co-cultures from normal and diseased hearts
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Macro-micro imaging of cardiac-neural circuits in co-cultures from normal and diseased hearts

机译:正常和患病心脏共培养中心脏-神经回路的宏观显微成像

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摘要

The autonomic nervous system plays an important role in the modulation of normal cardiac rhythm, but is also implicated in modulating the heart's susceptibility to re-entrant ventricular and atrial arrhythmias. The mechanisms by which the autonomic nervous system is pro-arrhythmic or anti-arrhythmic is multifaceted and varies for different types of arrhythmia and their cardiac substrates. Despite decades of research in this area, fundamental questions related to how neuron density and spatial organization modulate cardiac wave dynamics remain unanswered. These questions may be ill-posed in intact tissues where the activity of individual cells is often experimentally inaccessible. Development of simplified biological models that would allow us to better understand the influence of neural activation on cardiac activity can be beneficial. This Symposium Review summarizes the development of in vitro cardiomyocyte cell culture models of re-entrant activity, as well as challenges associated with extending these models to include the effects of neural activation.
机译:自主神经系统在正常心律的调节中起着重要作用,但也与调节心脏对折返性室性和房性心律失常的敏感性有关。自主神经系统促心律失常或抗心律失常的机制是多方面的,并且针对不同类型的心律失常及其心脏底物而有所不同。尽管在该领域进行了数十年的研究,但有关神经元密度和空间组织如何调节心脏波动力学的基本问题仍未得到解答。这些问题可能会在完整的组织中引起不适,在这些组织中,单个细胞的活性通常在实验上是无法达到的。开发简化的生物学模型将使我们能够更好地了解神经激活对心脏活动的影响可能是有益的。本专题研讨会总结了可重入活性的体外心肌细胞培养模型的发展,以及与扩展这些模型以包括神经激活作用相关的挑战。

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