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Analyzing effects of sodium pentobarbital on hemodynamic responses by using a graphic control system

机译:用图形控制系统分析戊巴比妥钠对血流动力学反应的影响

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The maintenance of adequate anesthesia is very important for animal studies. This goal could be achieved if the pharmacokinetics of the anesthetic is known and a well-controlled instrument system is used. To this end, a graphic control system is developed to study the effects of sodium pentobarbital on anesthesia. Hemodynamic signals such as mean blood pressure, pulse pressure, heart rate were analyzed and used as index for quantitative evaluating the level of anesthesia. Factors that could affect the anesthesia, e.g. body weight (BW) of the rat and the concentration of pentobarbital were used as independent variables to examine the survival time (dependent variable) for an overdosage anesthesia. The relationship among the BW, the drug concentration, and the survival time before death were formulated. As most physiological system shown, the empirical relationship is exponential in nature. This implies that the mechanism is highly nonlinear and it is complicated by the buffering characteristics of life. Hence, a precision feedback control system seems to be necessary for a well-controlled anesthesia.
机译:维持足够麻醉对动物研究非常重要。如果已知麻醉剂的药代动力学,并且使用良好控制的仪器系统,则可以实现该目标。为此,开发了一种图形控制系统以研究戊巴比妥钠对麻醉的影响。分析血液动力学信号,如平均血压,脉冲压力,心率,用作定量评估麻醉水平的指数。例如,可能影响麻醉的因素,例如,大鼠的体重(BW)和戊巴比妥的浓度用作独立变量,以检查过量麻醉的存活时间(依赖变量)。制定了BW,药物浓度和死亡前的存活时间之间的关系。作为大多数生理系统所示,实证关系本质上是指数级的。这意味着该机制是高度非线性的,并且通过生命的缓冲特征是复杂的。因此,良好控制的麻醉似乎是精密反馈控制系统。

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