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首页> 外文期刊>Journal of cardiovascular electrophysiology >Scaling of atrioventricular transmission in mammalian species: an evolutionary riddle!
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Scaling of atrioventricular transmission in mammalian species: an evolutionary riddle!

机译:缩放哺乳动物物种的房室传播:进化之谜!

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"Scaling deals with the structural and functional consequences of changes in size or scale among otherwise similar organisms." It plays a key role in all studies on comparative mammalian physiology and morphology. Heart weight is proportionally related to body weight and can be described by a straightforward, so-called allometric equation. We studied scaling of AV transmission times (PR intervals on the ECG) in 375 mammals of different dimensions and species. Scaling of AV transmission times versus heart length (third root of weight) is statistically best described by a S-shaped curve. This implies that AV transmission time in mammals is not linearly related to heart length and does not depend solely on the length of the AV transmission system. The AV node fine-tunes AV transmission times at rest and during exercise in individuals; it protects the ventricles against high-rate atrial arrhythmias such as atrial fibrillation; and it regulates basal AV transmission times in mammalian species of varying sizes. We call the "how" and "why" of the scaling of AV transmission time in mammals an evolutionary riddle that deserves further study.
机译:“缩放处理的是其他类似生物之间大小或规模变化的结构和功能后果。”它在所有比较哺乳动物生理学和形态学研究中都起着关键作用。心脏重量与体重成正比,可以用一个简单的所谓的等速方程来描述。我们研究了375种不同大小和物种的哺乳动物的AV传播时间(心电图上的PR间隔)的缩放。在统计上,最好通过S形曲线来描述AV传播时间与心脏长度(体重的三重根)的比例关系。这意味着在哺乳动物中,AV传输时间与心脏长度不是线性关系,并且不仅仅取决于AV传输系统的长度。 AV节点微调个人在休息和运动期间的AV传输时间;它可以保护心室免于发生高水平的房性心律不齐,例如房颤。它可以调节各种大小的哺乳动物的基础房室传导时间。我们称哺乳动物AV传输时间的缩放的“如何”和“为什么”是一个进化之谜,值得进一步研究。

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