[Intrinsic steady-state pattern of mouse cardiac electrophysiology: analysis using a characterized quantitative electrocardiogram strategy].

S Cheng, Z Chen, C Yu, T Sun, S Zhu, N Liu, P Zhu
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Abstract

Objective: To explore the intrinsic steady-state electrophysiological properties of mouse heart under physiological conditions by high-resolution quantitative analysis.

Methods: Twenty-two young adult C57BL/6 mice with a 1:1 male-to-female ratio were used. The limbs of the mice were fixed without anesthesia, and electrocardiographic waveforms, including characteristic P-waves, R-waves, and ST-waves, were recorded using a sensitive 12-lead electrophysiological recorder (ECGsqa) under spontaneous breathing. LabScribe software was used to extract and quantify high-resolution time course and amplitude parameters within a single cardiac cycle from the V3 precordial lead. Pearson correlation test combined with simple linear regression was used to generate a scatter plot of ECG parameter fitting. The common and unique correlation parameters were separately identified by joint associations for profiling the quantitative association network.

Results: ECGsqa analysis identified and quantified 14 characteristic ECG parameters, 28.6% of which showed statistical differences between the groups. Compared to male mice, female mice exhibited higher amplitudes and velocities of R and ST waves. Among the 51 association pairs identified in primary association analysis, 47.1% were positively correlated, including shared (29.2%), male-specific (29.2%), and female-specific (41.7%) association groups. Second-order clustering of the association pairs revealed that the amplituderate association pairs of each waveform voltage in both male and female mouse hearts were strongly correlated. The male mice showed an atrioventricular interconnection pattern, while the female mice showed a unique atrial conduction system quality dependence. The distribution network characteristics of the association groups showed that sex-specific and common correlation sets formed a certain series pattern.

Conclusion: We discovered a novel intrinsic correlation network of cardiac electrophysiological traits in male and female mice, which reveals the key internal quantitative characteristics and gender difference of both atrial and ventricular conduction systems.

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[小鼠心脏电生理学的内在稳态模式:使用定性定量心电图策略进行分析]。
目的:通过高分辨率定量分析,探索生理条件下小鼠心脏固有的稳态电生理特性:通过高分辨率定量分析,探索生理条件下小鼠心脏固有的稳态电生理特性:方法:采用 22 只年轻的成年 C57BL/6 小鼠,雌雄比例为 1:1。在不麻醉的情况下固定小鼠四肢,在自主呼吸状态下使用灵敏的 12 导联电生理记录仪(ECGsqa)记录心电图波形,包括特征性 P 波、R 波和 ST 波。LabScribe 软件用于从 V3 心前导联提取和量化单个心动周期内的高分辨率时间进程和振幅参数。使用皮尔逊相关检验结合简单线性回归生成心电图参数拟合散点图。通过联合关联,分别确定了共同和独特的相关参数,以剖析定量关联网络:ECGsqa分析确定并量化了14个特征心电图参数,其中28.6%的参数在组间存在统计学差异。与雄性小鼠相比,雌性小鼠的 R 波和 ST 波的振幅和速度更高。在初级关联分析中确定的 51 对关联中,47.1% 呈正相关,包括共享关联组(29.2%)、雄性特异性关联组(29.2%)和雌性特异性关联组(41.7%)。关联对的二阶聚类显示,雌雄小鼠心脏中每种波形电压的幅值关联对都有很强的相关性。雄性小鼠表现出房室互联模式,而雌性小鼠则表现出独特的心房传导系统质量依赖性。关联组的分布网络特征显示,性别特异性关联组和共同关联组形成了一定的序列模式:结论:我们发现了雌雄小鼠心脏电生理特征的新型内在关联网络,揭示了心房和心室传导系统的关键内部定量特征和性别差异。
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来源期刊
南方医科大学学报杂志
南方医科大学学报杂志 Medicine-Medicine (all)
CiteScore
1.50
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0.00%
发文量
208
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