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首页> 外文期刊>Cardiovascular engineering >Novel means to monitor cardiac performance: the impact of the force-frequency and force-interval relationships on recirculation fraction and potentiation ratio.
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Novel means to monitor cardiac performance: the impact of the force-frequency and force-interval relationships on recirculation fraction and potentiation ratio.

机译:监测心脏性能的新方法:力-频率和力-间隔关系对再循环分数和增强率的影响。

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Insights into intracellular calcium regulation and contractile state can be accomplished by changing pacing rate. Steady-state increases in heart rate (HR) (force-frequency relationship, FFR), and introduction of extrasystoles (ES) (force-interval relationship, FIR) have been used to investigate this relationship. This study focused on the recirculation fraction (RF) and potentiation ratio (PR), obtained from the recovery of the FFR and FIR. These parameters may provide insight on intracellular Ca(2+) regulation. Left ventricular (LV) pressures and HR were assessed in anesthetized canines (n = 7). Intrinsic data were collected prior to and following HR increases to 150, 180, and 200 bpm, as well as following delivery of an ES at 280 ms. The RF was calculated as the slope of dP/dt(max(n + 1)) vs. dP/dt(max(n)), where n = beat number. The PR was calculated by normalizing dP/dt(max) from the first beat following the ES (or the last paced beat) to the steady-state dP/dt(max). The RF due to an ES was not significantly different than that from a HR of 200 bpm. The PR from an ES was not significantly different than from a HR of 150 bpm. The impact of an ES delivered at an interval of 280 ms produces a PR similar to that from a HR of 150 bpm; yet, it recovers similarly to the termination of pacing at 200 bpm, eliciting a similar RF value. The method of measuring RF by an ES versus an increased HR may provide a safer and more feasible approach to collecting diagnostic information.
机译:通过改变起搏速度,可以了解细胞内钙的调节和收缩状态。心率(HR)的稳态增加(力与频率的关系,FFR)和收缩前期(ES)的引入(力与间隔的关系,FIR)已被用于研究这种关系。这项研究的重点是从FFR和FIR的回收中获得的再循环分数(RF)和增强比(PR)。这些参数可能提供有关细胞内Ca(2+)调节的见解。在麻醉犬中评估左心室(LV)压力和HR(n = 7)。在HR增加到150、180和200 bpm之前和之后,以及在280 ms交付ES之后,收集内部数据。 RF计算为dP / dt(max(n + 1))与dP / dt(max(n))的斜率,其中n =拍数。通过将ES之后的第一个拍子(或最后一个节奏的拍子)对稳态dP / dt(max)的dP / dt(max)进行归一化来计算PR。 ES引起的RF与200 bpm的HR相比无显着差异。 ES的PR与150 bpm的HR没有显着差异。以280 ms的间隔交付的ES产生的PR类似于来自150 bpm的HR的PR。然而,它的恢复类似于终止于200 bpm的起搏,从而产生相似的RF值。通过ES与增加的HR来测量RF的方法可以提供一种更安全,更可行的方法来收集诊断信息。

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