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Engineering a MicroPhysiological Model of the Heart-Brain Axis

机译:工程心脏脑轴的微生物学模型

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Conclusions: Unregulated beating was sustained for more than 4 weeks within our microfluidics system. We aim to modulate contractions by regulating the different neuronal populations incorporated into our model. In the future, we hypothesize that our microfluidic platform may be used for drug screening and the development of novel treatments for the sympathovagal imbalance. Specificity, we would like to use our model to further study the underlying mechanisms and potential treatments for a dysfunction CANS.
机译:结论:在我们的微流体系统中超过4周,不受管制的殴打是持续的。我们的目标是通过调节掺入我们模型中的不同神经元人群来调节收缩。在未来,我们假设我们的微流体平台可用于药物筛选和新型治疗的发育,以实现同性恋的不平衡。特异性,我们想使用我们的模型进一步研究功能障碍罐的潜在机制和潜在治疗方法。

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