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Modeling the Nonlinear Time Dynamics of Multidimensional Hormonal Systems

机译:建模多维激素系统的非线性时间动态

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摘要

In most hormonal systems (as well as many physiological systems more generally), the chemical signals from the brain, which drive much of the dynamics, can not be observed in humans. By the time the molecules reach peripheral blood, they have been so diluted so as to not be assayable. It is not possible to invasively (surgically) measure these agents in the brain. This creates a difficult situation in terms of assessing whether or not the dynamics may have changed due to disease or aging. Moreover, most biological feedforward and feedback interactions occur after time delays, and the time delays need to be properly estimated. We address the following two questions: (1) Is it possible to devise a combination of clinical experiments by which, via exogenous inputs, the hormonal system can be perturbed to new steady-states in such a way that information about the unobserved components can be ascertained; and, (2) Can one devise methods to estimate (possibly, time-varying) time delays between components of a multidimensional nonlinear time series, which are more robust than traditional methods? We present methods for both questions, using the Stress (ACTH-cortisol) hormonal system as a prototype, but the approach is more broadly applicable.
机译:在大多数荷尔蒙系统(以及更常见的生理系统)中,来自大脑的化学信号,驱动大部分动力学,不能在人类中观察到。当分子到达外周血时,它们已经如此稀释,以免是不可分配的。不可能侵入(手术)测量大脑中的这些药剂。这在评估由于疾病或衰老可能发生的动态是否可能发生变化而产生困难的情况。此外,大多数生物馈送和反馈交互在时间延迟之后发生,并且需要正确估计时间延迟。我们解决以下两个问题:(1)可以通过外源投入设计临床实验组合,通过外源投入,荷尔蒙系统可以扰乱新的稳态,这种方式可以使有关未观察组件的信息可以是确定;并且,(2)可以设计一种设计的方法来估计多维非线性时间序列的组件之间的估计(可能,时变)时间延迟,这比传统方法更鲁棒?我们使用应力(ACTH-Cortisol)激素系统作为原型的方法来提出方法,但该方法更广泛适用。

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