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A CONTROL-ORIENTED MODEL OF BLOOD VOLUME RESPONSE TO HEMORRHAGE AND FLUID RESUSCITATION

机译:血流和液体复苏的血流反应控制模型

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This paper presents a control-oriented model of blood volume response to hemorrhage and fluid resuscitation that can be potentially utilized in closed-loop control of fluid resuscitation. A unique characteristic of the proposed model is that it is built to ensure structural parsimony while retaining physiological transparency. To accomplish this characteristic, blood volume regulation in the body to external perturbations of hemorrhage and fluid resuscitation was modeled as a low-order control system in which the fluid transfer between blood and interstitial fluid is governed by a proportional-integral controller. This in essence resulted in a minimal model with four parameters to be adapted to each individual. The validity of the proposed model was tested using data available in the literature. The results indicated that the proposed model was able to reproduce the blood volume response to hemorrhage and fluid resuscitation with high fidelity: on the average, the prediction error was only 1.53 + 11.5 %, thus strongly supporting our claim that it can be used as viable basis for the design of closed-loop fluid resuscitation controllers.
机译:本文提出了一种面向控制的血容量对出血和液体复苏的反应模型,该模型可潜在地用于液体复苏的闭环控制中。所提出的模型的独特之处在于,它的建立是为了确保结构上的简约性,同时保持生理上的透明性。为了实现此特性,将体内对外部出血和液体复苏的血容量调节模型化为低阶控制系统,其中血液与组织液之间的流体传输由比例积分控制器控制。从本质上讲,这导致了一个最小的模型,该模型具有适用于每个人的四个参数。使用文献中可用的数据测试了所提出模型的有效性。结果表明,所提出的模型能够高保真地再现对出血和液体复苏的血容量响应:平均而言,预测误差仅为1.53 + 11.5%,因此有力地支持了我们的说法,即该模型可作为可行的方法闭环液体复苏控制器设计的基础。

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