O'Shea Christopher, Holmes Andrew P, Yu Ting Y, Winter James, Wells Simon P, Parker Beth A, Fobian Dannie, Johnson Daniel M, Correia Joao, Kirchhof Paulus, Fabritz Larissa, Rajpoot Kashif, Pavlovic Davor
Institute of Cardiovascular Sciences, University of Birmingham; EPSRC Centre for Doctoral Training in Physical Sciences for Health, School of Chemistry, University of Birmingham; School of Computer Science, University of Birmingham.
Institute of Cardiovascular Sciences, University of Birmingham; Institute of Clinical Sciences, University of Birmingham.
J Vis Exp. 2019 Jun 4(148). doi: 10.3791/59663.
Optical mapping is an established technique for high spatio-temporal resolution study of cardiac electrophysiology in multi-cellular preparations. Here we present, in a step-by-step guide, the use of ElectroMap for analysis, quantification, and mapping of high-resolution voltage and calcium datasets acquired by optical mapping. ElectroMap analysis options cover a wide variety of key electrophysiological parameters, and the graphical user interface allows straightforward modification of pre-processing and parameter definitions, making ElectroMap applicable to a wide range of experimental models. We show how built-in pacing frequency detection and signal segmentation allows high-throughput analysis of entire experimental recordings, acute responses, and single beat-to-beat variability. Additionally, ElectroMap incorporates automated multi-beat averaging to improve signal quality of noisy datasets, and here we demonstrate how this feature can help elucidate electrophysiological changes that might otherwise go undetected when using single beat analysis. Custom modules are included within the software for detailed investigation of conduction, single file analysis, and alternans, as demonstrated here. This software platform can be used to enable and accelerate the processing, analysis, and mapping of complex cardiac electrophysiology.
光学映射是一种成熟的技术,用于在多细胞制剂中对心脏电生理学进行高时空分辨率研究。在此,我们以分步指南的形式介绍如何使用ElectroMap对通过光学映射获取的高分辨率电压和钙数据集进行分析、量化和映射。ElectroMap分析选项涵盖了各种关键的电生理参数,其图形用户界面允许直接修改预处理和参数定义,使ElectroMap适用于广泛的实验模型。我们展示了内置的起搏频率检测和信号分割如何实现对整个实验记录、急性反应和单搏变异性的高通量分析。此外,ElectroMap还集成了自动多搏平均功能,以提高噪声数据集的信号质量,在此我们展示了该功能如何有助于阐明使用单搏分析时可能未被检测到的电生理变化。如本文所示,软件中包含自定义模块,用于详细研究传导、单列分析和交替现象。该软件平台可用于实现和加速复杂心脏电生理学的处理、分析和映射。