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Mapping baroreceptor function to genome: a mathematical modeling approach.

机译:将压力感受器功能映射到基因组:一种数学建模方法。

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摘要

To gain information about the genetic basis of a complex disease such as hypertension, blood pressure averages are often obtained and used as phenotypes in genetic mapping studies. In contrast, direct measurements of physiological regulatory mechanisms are not often obtained, due in large part to the time and expense required. As a result, little information about the genetic basis of physiological controlling mechanisms is available. Such information is important for disease diagnosis and treatment. In this article, we use a mathematical model of blood pressure to derive phenotypes related to the baroreceptor reflex, a short-term controller of blood pressure. The phenotypes are then used in a quantitative trait loci (QTL) mapping study to identify a potential genetic basis of this controller.
机译:为了获得有关诸如高血压等复杂疾病的遗传基础的信息,通常会获得血压平均值并将其用作基因作图研究中的表型。相反,在很大程度上由于时间和费用的原因,通常无法获得对生理调节机制的直接测量。结果,关于生理控制机制的遗传基础的信息很少。这些信息对于疾病的诊断和治疗很重要。在本文中,我们使用血压的数学模型来推导与压力感受器反射(血压的短期控制者)相关的表型。然后将这些表型用于定量性状基因座(QTL)定位研究中,以鉴定该控制器的潜在遗传基础。

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