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一款用于分析心脏、血管和呼吸相互作用的免费软件。

: a free software for analyzing cardiac, vascular and respiratory interactions.

作者信息

Pichot Vincent, Corbier Christophe, Chouchou Florian, Barthélémy Jean-Claude, Roche Frédéric

机构信息

SAINBIOSE U1059, Inserm, Saint-Etienne Jean-Monnet University, Clinical Physiology and Exercise, CHU of Saint-Etienne, Saint-Etienne, France.

LASPI EA3059, Saint-Etienne Jean-Monnet University, Roanne Technology University Institute, Roanne, France.

出版信息

Front Physiol. 2024 Jan 4;14:1224440. doi: 10.3389/fphys.2023.1224440. eCollection 2023.

Abstract

Simultaneous beat-to-beat R-R intervals, blood pressure and respiration signals are routinely analyzed for the evaluation of autonomic cardiovascular and cardiorespiratory regulations for research or clinical purposes. The more recognized analyses are i) heart rate variability and cardiac coherence, which provides an evaluation of autonomic nervous system activity and more particularly parasympathetic and sympathetic autonomic arms; ii) blood pressure variability which is mainly linked to sympathetic modulation and myogenic vascular function; iii) baroreflex sensitivity; iv) time-frequency analyses to identify fast modifications of autonomic activity; and more recently, v) time and frequency domain Granger causality analyses were introduced for assessing bidirectional causal links between each considered signal, thus allowing the scrutiny of many physiological regulatory mechanisms. These analyses are commonly applied in various populations and conditions, including mortality and morbidity predictions, cardiac and respiratory rehabilitation, training and overtraining, diabetes, autonomic status of newborns, anesthesia, or neurophysiological studies. We developed , a free software to analyze cardiac, vascular and respiratory interactions, with a friendly graphical interface designed to meet laboratory requirements. The main strength of resides in its wide scope of applications: recordings can arise from beat-to-beat preprocessed data (R-R, systolic, diastolic and mean blood pressure, respiration) or raw data (ECG, continuous blood pressure and respiratory waveforms). It has several tools for beat detection and correction, as well as setting of specific areas or events. In addition to the wide possibility of analyses cited above, the interface is also designed for easy study of large cohorts, including batch mode signal processing to avoid running repetitive operations. Results are displayed as figures or saved in text files that are easily employable in statistical softwares. is freely available at this website: anslabtools.univ-st-etienne.fr. It has been developed using MATLAB and works on Windows 64-bit operating systems. The software is a standalone application avoiding to have programming skills and to install MATLAB. The aims of this paper area are to describe the physiological, research and clinical contexts of , to introduce the methodological approach of the different techniques used, and to show an overview of the software with the aid of screenshots.

摘要

为了研究或临床目的,通常会同时逐搏分析R-R间期、血压和呼吸信号,以评估自主心血管和心肺调节功能。目前更受认可的分析方法有:i)心率变异性和心脏相干性,用于评估自主神经系统活动,尤其是副交感神经和交感神经自主分支;ii)血压变异性,主要与交感神经调节和肌源性血管功能有关;iii)压力反射敏感性;iv)时频分析,用于识别自主活动的快速变化;最近,v)引入了时域和频域格兰杰因果分析,以评估各相关信号之间的双向因果关系,从而能够详细研究多种生理调节机制。这些分析方法普遍应用于不同人群和各种情况,包括死亡率和发病率预测、心脏和呼吸康复、训练与过度训练、糖尿病、新生儿自主状态、麻醉或神经生理学研究等。我们开发了一款免费软件,用于分析心脏、血管和呼吸之间的相互作用,其友好的图形界面旨在满足实验室要求。该软件的主要优势在于其广泛的应用范围:记录数据可以来自逐搏预处理数据(R-R间期、收缩压、舒张压和平均血压、呼吸)或原始数据(心电图、连续血压和呼吸波形)。它有多种用于搏动检测和校正的工具,以及特定区域或事件的设置功能。除了上述广泛的分析可能性外,该界面还设计用于方便地研究大型队列,包括批处理模式信号处理,以避免运行重复操作。结果以图形形式显示或保存为文本文件,便于在统计软件中使用。该软件可在以下网站免费获取:anslabtools.univ-st-etienne.fr。它是使用MATLAB开发的,适用于Windows 64位操作系统。该软件是一个独立应用程序,无需具备编程技能,也无需安装MATLAB。本文的目的是描述该软件的生理、研究和临床背景,介绍所使用的不同技术的方法,并借助屏幕截图展示该软件的概况。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ecd7/10797906/2eba5b8c80e7/fphys-14-1224440-g001.jpg

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