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可选弹性-阻力左心室泵模型的验证

Validation of optional elastance-resistance left ventricle pump models.

作者信息

Campbell K B, Ringo J A, Knowlen G G, Kirkpatrick R D, Schmidt S L

出版信息

Am J Physiol. 1986 Aug;251(2 Pt 2):H382-97. doi: 10.1152/ajpheart.1986.251.2.H382.

DOI:10.1152/ajpheart.1986.251.2.H382
PMID:3740292
Abstract

Left ventricular pressure, P(t), and outflow Q(t), data were collected in anesthetized, open-chest rats and dogs. The data were used in a three-tiered validation procedure to evaluate 14 competing forms of elastance [E(t)]-resistance (R) left ventricle (LV) pump models. Competing models arose from considering two forms of parameterization of E(t), time variation versus no time variation in LV unstretched volume (Vd) and dependence versus no dependence of R on P(t) and isovolumic P(t). A descriptive test based on the normalized root-mean-square errors in the fit to P and, separately, in the fit to Q was used to distinguish between models. The best of the competing models was the one that treated Vd as a function of time and R as a constant. Models of this form fitted the data very well and were said to be descriptively valid. The best of the competing models were then asked to predict the observed responses to changes in afterload, preload, and prior-beat history. The models did not predict these conditions well and failed to pass the test for predictive validity. Additionally, the model parameters were judged not to represent their supposed physical homologs and, thus, failed the test for explanative validity. One cause for E(t)-R model failure was an inadequate representation of events at end systole. This deficiency was apparently due to not accounting for deactivation in the model. Other features may also be needed before a comprehensive LV model can be formulated. Identical conclusions were made from data from the rat and the dog.

摘要

在麻醉开胸的大鼠和狗身上收集左心室压力P(t)和流出量Q(t)的数据。这些数据用于一个三层验证程序,以评估14种相互竞争的弹性[E(t)]-阻力(R)左心室(LV)泵模型。相互竞争的模型源于考虑E(t)的两种参数化形式,即左心室未拉伸容积(Vd)随时间变化与不随时间变化,以及R对P(t)和等容P(t)的依赖性与非依赖性。基于拟合P和分别拟合Q时的归一化均方根误差的描述性测试被用于区分模型。相互竞争的模型中最好的是将Vd视为时间的函数且R视为常数的模型。这种形式的模型对数据拟合得非常好,被认为具有描述性有效性。然后要求相互竞争的最佳模型预测观察到的对后负荷、前负荷和前搏历史变化的反应。这些模型对这些情况预测不佳,未能通过预测有效性测试。此外,模型参数被判定不能代表其假定的物理同源物,因此未能通过解释有效性测试。E(t)-R模型失败的一个原因是对收缩末期事件的表示不足。这种缺陷显然是由于模型中没有考虑失活。在制定一个全面的左心室模型之前,可能还需要其他特征。大鼠和狗的数据得出了相同的结论。

相似文献

1
Validation of optional elastance-resistance left ventricle pump models.可选弹性-阻力左心室泵模型的验证
Am J Physiol. 1986 Aug;251(2 Pt 2):H382-97. doi: 10.1152/ajpheart.1986.251.2.H382.
2
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Description of LV pressure-volume relations by time-varying elastance and source resistance.通过时变弹性和源阻力描述左心室压力-容积关系
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Left-ventricular dynamic model based on constant ejection flow periods.基于恒定射血流期的左心室动力学模型。
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Temporal relationship between left ventricular and arterial system elastances.左心室与动脉系统弹性之间的时间关系。
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Left ventricular systolic dynamics in terms of its chamber mechanical properties.就心室力学特性而言的左心室收缩动力学。
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引用本文的文献

1
Quantification of cardiac pumping mechanics in rats by using the elastance-resistance model based solely on the measured left ventricular pressure and cardiac output.仅基于测量的左心室压力和心输出量,使用基于弹性阻力模型的方法对大鼠心脏泵血力学进行定量分析。
Pflugers Arch. 2019 Jul;471(7):935-947. doi: 10.1007/s00424-019-02270-7. Epub 2019 Mar 23.
2
Methylprednisolone Protects Cardiac Pumping Mechanics from Deteriorating in Lipopolysaccharide-Treated Rats.甲基强的松龙可保护脂多糖处理大鼠的心脏泵血机制不致恶化。
Front Physiol. 2015 Nov 26;6:348. doi: 10.3389/fphys.2015.00348. eCollection 2015.
3
Acetyl-l-carnitine and oxfenicine on cardiac pumping mechanics in streptozotocin-induced diabetes in male Wistar rats.
乙酰左旋肉碱和奥芬可卡因对链脲佐菌素诱导的雄性 Wistar 大鼠糖尿病心脏泵功能的影响。
PLoS One. 2013 Jul 26;8(7):e69977. doi: 10.1371/journal.pone.0069977. Print 2013.
4
Aminoguanidine prevents the impairment of cardiac pumping mechanics in rats with streptozotocin and nicotinamide-induced type 2 diabetes.氨基胍可预防链脲佐菌素和烟酰胺诱导的2型糖尿病大鼠心脏泵血机制的损害。
Br J Pharmacol. 2008 Jun;154(4):758-64. doi: 10.1038/bjp.2008.119. Epub 2008 Mar 31.
5
Contractile-based model interpretation of pressure-volume dynamics in the constantly activated (Ba2+) isolated heart.持续激活(Ba2+)的离体心脏中压力-容积动力学的基于收缩的模型解释
Ann Biomed Eng. 1994 Nov-Dec;22(6):550-67. doi: 10.1007/BF02368284.
6
Relationship between changes of chamber mechanical parameters and mean pressure-mean flow diagrams of the left ventricle.心室力学参数变化与左心室平均压力-平均血流图之间的关系
Ann Biomed Eng. 1988;16(3):279-97. doi: 10.1007/BF02368004.
7
The step response of left ventricular pressure to ejection flow: a system oriented approach.左心室压力对射血流量的阶跃响应:一种面向系统的方法。
Ann Biomed Eng. 1992;20(1):99-126. doi: 10.1007/BF02368508.