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首页> 外文期刊>Frontiers in Physiology >Cardiac Optogenetics and Optical Mapping – Overcoming Spectral Congestion in All-Optical Cardiac Electrophysiology
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Cardiac Optogenetics and Optical Mapping – Overcoming Spectral Congestion in All-Optical Cardiac Electrophysiology

机译:心电神经和光学映射 - 克服全光心脏电生理中的克谱充血

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摘要

Optogenetic control of the heart is an emergent technology that offers unparalleled spatio-temporal control of cardiac dynamics via light-sensitive ion pumps and channels (opsins). This fast-evolving technique holds broad scope in both clinical and basic research setting. Combination of optogenetics with optical mapping of voltage or calcium fluorescent probes facilitates ‘all-optical’ electrophysiology, allowing precise optogenetic actuation of cardiac tissue with high spatio-temporal resolution imaging of action potential and calcium transient morphology and conduction patterns. In this review, we provide a synopsis of optogenetics and discuss in detail its use and compatibility with optical interrogation of cardiac electrophysiology. We briefly discuss the benefits of all-optical cardiac control and electrophysiological interrogation compared to traditional techniques, and describe mechanisms, unique features and limitations of optically induced cardiac control. In particular, we focus on state-of-the-art setup design, challenges in light delivery and filtering, and compatibility of opsins with fluorescent reporters used in optical mapping. The interaction of cardiac tissue with light, and physical and computational approaches to overcome the ‘spectral congestion’ that arises from the combination of optogenetics and optical mapping are discussed. Finally, we summarize recent preclinical work applications of combined cardiac optogenetics and optical mapping approach.
机译:心肌控制是一种紧急的技术,通过光敏离子泵和通道(OPSINS)提供无与伦比的心动力学控制心动力学。这种快速发展的技术在临床和基础研究环境中具有广泛的范围。用电压或钙荧光探针的光学映射与光学映射的组合有助于“全光”电生理学,允许具有高时空分辨率成像的心脏组织精确的致敏作用,以及动作电位和钙瞬态形貌和传导模式。在本综述中,我们提供了光源的概要,并详细讨论了与心电子电生理学的光学询问的使用和兼容性。与传统技术相比,我们简要介绍了所有光学心脏控制和电生理询问的益处,并描述了光学诱导的心脏控制的机制,独特的特征和局限性。特别是,我们专注于最先进的设置设计,光线传递和过滤的挑战,以及用光学映射中使用的荧光报道器的OPSINS的兼容性。讨论了心脏组织与光的相互作用,以及克服从光学和光学映射的组合产生的“光谱充血”的物理和计算方法。最后,我们总结了组合心电神经和光学映射方法的近期临床前工作应用。

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