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射血分数和心率与静息及运动时的舒张期峰值充盈率相关。

Ejection fraction and heart rate correlate with diastolic peak filling rate at rest and during exercise.

作者信息

Bianco J A, Filiberti A W, Baker S P, King M A, Nalivaika L A, Leahey D, Doherty P W, Alpert J S

出版信息

Chest. 1985 Jul;88(1):107-13. doi: 10.1378/chest.88.1.107.

Abstract

We investigated the independent variables correlating with the multigated radionuclide peak filling rate (PFR) at rest and during supine bicycle exercise in 20 normal individuals. Independent variables were systolic blood pressure (SBP), diastolic blood pressure (DBP), heart rate (HR), ejection fraction (LVEF), time to PFR (TPFR), peak ejection rate (PER) and time to PER (TPER). Fifteen subjects completed at least five stages of exercise at 25 watts each. Correlating independent variables were selected by a forward-backward stepwise multiple linear regression (BMDP2R). A partial correlation statistical program was also used to allow control of critical independent variables. The final regression equations were: a) resting state, PFR = -2.5 + 0.03HR + 0.05LVEF + 0.02SBP-0.02DBP, and b) exercise state, PFR = -3.8 + 0.04HR + 0.08LVEF. All independent variables mentioned above correlated with PFR (simple correlations designated as zero partials). However, when LVEF and HR were held constant (second order partials), the correlation of PFR with any of the other independent variables disappeared. In summary, the radionuclide global LV PFR is predominantly correlated to LVEF and HR at rest and during exercise. These correlations should be considered when assessing exercise effects of disease states on PFR.

摘要

我们研究了20名正常人静息状态及仰卧位蹬车运动时与多门控放射性核素峰值充盈率(PFR)相关的自变量。自变量包括收缩压(SBP)、舒张压(DBP)、心率(HR)、射血分数(LVEF)、达到PFR的时间(TPFR)、峰值射血率(PER)以及达到PER的时间(TPER)。15名受试者完成了至少五个阶段的运动,每个阶段功率为25瓦。通过向前向后逐步多元线性回归(BMDP2R)选择相关自变量。还使用了偏相关统计程序来控制关键自变量。最终回归方程为:a)静息状态,PFR = -2.5 + 0.03HR + 0.05LVEF + 0.02SBP - 0.02DBP;b)运动状态,PFR = -3.8 + 0.04HR + 0.08LVEF。上述所有自变量均与PFR相关(简单相关设为零偏相关)。然而,当LVEF和HR保持恒定时(二阶偏相关),PFR与任何其他自变量的相关性消失。总之,放射性核素左心室整体PFR在静息和运动时主要与LVEF和HR相关。在评估疾病状态对PFR的运动影响时应考虑这些相关性。

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