arrow
返回

Depression diagnostics using a nonlinear mathematical oscillatory model

delete2024-09-01
delete0
PRE
AI
L
L. Cvetićanin
J
John Baker *
DOI:10.1016/j.cmpb.2024.108279delete
delete原文链接
delete原文求助
delete分享
delete收藏
摘要

摘要

En 中文
Background and Objectives: It is known that long-term stress leads to trauma and very often to depression. Usually, the diagnosis of depression is dealt with by psychiatrists who, based on conversations and questions, diagnose the patient's illness and condition. Unfortunately, this diagnosis is not always reliable. To prevent the development of disease, it is necessary to detect illness in a timely manner. One of the indications of the possibility of the onset of disease is a disturbance in the level of hormones in the body, especially cortisol. The purpose of this study was to develop a mathematical model for cortisol variation resulting from stress which would be useful in making conclusions about depressive states. Methods: Rapid changes in cortisol concentration, according to ultradian rhythms, which are much faster than the daily circadian rhythm, is modelled as a truly nonlinear oscillator. The mathematical model contains two coupled first order differential equations. The stress is modeled as a pulsating action, described with a periodic trigonometric function, and cortisol production as a cubic nonlinear one. Three models for cortisol variation are considered: 1) the pure nonlinear model, 2) the periodically excited system, 3) and the chaotic system. The results from the study are supported with experimental measurements. Results: Without stress, cortisol variation is of an oscillatory type with a constant steady-state amplitude. Intensive stress causes a resonant phenomenon in cortisol oscillatory variation. The occasion is short and is usually without consequences. For long stress periods deterministic chaos occurs which permanently changes the levels of cortisol. This phenomenon is an indicator of depression. Results from the suggested models are compared with experimentally obtained ones and good quantitative agreement is obtained. Conclusions: The nonlinear oscillator is a good model for indication of depression. The model provides not only general conclusions, but also individual ones, if personal characteristics are taken into consideration. Response of the model depends not only on the input data related to stress, but also on the system parameters that specify each individual. Findings obtained from this study have implications for the medical diagnosis and treatment of depression.
Keyword:
Cortisol
Adrenocorticotropin
Ultradian rhythm
Chaos
Nonlinear vibration
Resonance

期刊

Computer Methods and Programs in Biomedicine 封面图
Computer Methods and Programs in Biomedicine
IF:
4.8
论文数:
7.0K
被引数:
2.1W

机构

U
University of Novi Sad
学者数:
9.3K
论文数: 6.2K
被引数: 5.0K
H
Hong Kong Baptist University
学者数:
6.3K
论文数: 7.5K
被引数: 1.3W
引用论文

引用论文

Basal circadian and pulsatile ACTH and cortisol secretion in patients with fibromyalgia and/or chronic fatigue syndrome
err2004-07-01
err183
PREAI
errCrofford, LJ; Young, EA; Engleberg, NC; Korszun, A; Brucksch, CB; McClure, LA; Brown, MB; Demitrack, MA
err分享
err收藏
Cortisol dynamics in depression: Application of a continuous-time process model
err2020-05-01
err10
errOAAI
errBooij, Sanne H.; Wigman, Johanna T. W.; Jacobs, Nele; Thiery, Evert; Derom, Catherine; Wichers, Marieke; Oravecz, Zita
err分享
err收藏
Advances in mathematical modelling of the hypothalamic-pituitary-adrenal (HPA) axis dynamics and the neuroendocrine response to stress
err2018-09-01
err18
PREAI
errStanojevic, Ana; Markovic, Vladimir M.; Cupic, Zeljko; Kolar-Anic, Ljiljana; Vukojevic, Vladana
err分享
err收藏
err分享
err收藏
err分享
err收藏
Modeling the Influence of Chronic Sleep Restriction on Cortisol Circadian Rhythms, with Implications for Metabolic Disorders
err2021-07-27
err13
errOAAI
errRao, Rohit; Somvanshi, Pramod; Klerman, Elizabeth B.; Marmar, Charles; Doyle, Francis J., III
err分享
err收藏
学者 查看更多内容