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心电图在小鼠中的应用——特别强调遥测技术。

What to consider for ECG in mice-with special emphasis on telemetry.

机构信息

Zurich Integrative Rodent Physiology (ZIRP), University of Zurich, Zurich, Switzerland.

出版信息

Mamm Genome. 2023 Jun;34(2):166-179. doi: 10.1007/s00335-023-09977-0. Epub 2023 Feb 7.

Abstract

Genetically or surgically altered mice are commonly used as models of human cardiovascular diseases. Electrocardiography (ECG) is the gold standard to assess cardiac electrophysiology as well as to identify cardiac phenotypes and responses to pharmacological and surgical interventions. A variety of methods are used for mouse ECG acquisition under diverse conditions, making it difficult to compare different results. Non-invasive techniques allow only short-term data acquisition and are prone to stress or anesthesia related changes in cardiac activity. Telemetry offers continuous long-term acquisition of ECG data in conscious freely moving mice in their home cage environment. Additionally, it allows acquiring data 24/7 during different activities, can be combined with different challenges and most telemetry systems collect additional physiological parameters simultaneously. However, telemetry transmitters require surgical implantation, the equipment for data acquisition is relatively expensive and analysis of the vast number of ECG data is challenging and time-consuming. This review highlights the limits of non-invasive methods with respect to telemetry. In particular, primary screening using non-invasive methods can give a first hint; however, subtle cardiac phenotypes might be masked or compensated due to anesthesia and stress during these procedures. In addition, we detail the key differences between the mouse and human ECG. It is crucial to consider these differences when analyzing ECG data in order to properly translate the insights gained from murine models to human conditions.

摘要

遗传或手术改变的小鼠通常被用作人类心血管疾病的模型。心电图(ECG)是评估心脏电生理学以及识别心脏表型和对药理学及手术干预反应的金标准。在不同条件下,有多种方法用于获取小鼠 ECG,这使得比较不同结果变得困难。非侵入性技术仅允许短期数据采集,并且容易受到与应激或麻醉相关的心脏活动变化的影响。遥测技术可在其笼内环境中自由移动的清醒小鼠中连续长期获取 ECG 数据。此外,它允许在不同活动期间 24/7 进行数据采集,可与不同的挑战相结合,并且大多数遥测系统可同时收集其他生理参数。然而,遥测发射器需要手术植入,数据采集设备相对昂贵,并且对大量 ECG 数据的分析具有挑战性且耗时。这篇综述强调了非侵入性方法相对于遥测技术的局限性。特别是,使用非侵入性方法进行初步筛选可以提供初步提示;然而,由于这些过程中的麻醉和应激,细微的心脏表型可能会被掩盖或代偿。此外,我们详细介绍了小鼠和人类 ECG 之间的关键差异。在分析 ECG 数据时,考虑这些差异至关重要,以便将从鼠模型中获得的见解正确地转化为人类情况。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5378/10290603/d58b205c78ef/335_2023_9977_Fig1_HTML.jpg

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