Mathematical Analysis of Drugs and Substance Abuse in Kenya among the Adolescents

Francis Musili Muli Muli
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Abstract

It is incontestable that the mortality rate among drugs and substance abusers is higher than that in thegeneral population. The National Authority for the campaign against alcohol and substance abuse (NACADA)has painted a grim picture of the incessant rise in the number of youth becoming addicted. In this research, adeterministic model for drugs and substance abuse (DSA) driven by light drug abusers (LDA) and heavy drugabusers (HDA) was proposed. The basic reproduction number R0; , the foundation upon which the model’sstability analysis is established, was determined by utilizing the next-generation matrix (NGM) approach.The analysis showed that drug-free equilibrium (DFE) is locally asymptotically stable for R0 < 1 and unstableif R0 > 1. The global stability of both DFE and drugs endemic equilibrium (DEE) are explored by utilizingLyapunov functions. The bifurcation analysis was carried out using the center manifold theorem, where themethod utilized by Castilo-Chavez and Song was implemented and revealed that the rate of drug reinitiationdrove backward bifurcation. The contribution of the important parameters to DSA are investigated, andresults are presented graphically. Results from the simulation revealed that delayed exposure of the youth todrugs increased identification and treatment of the LDA and HDA, which would curtail DSA menace in Kenya.
肯尼亚青少年毒品和药物滥用情况的数学分析
毋庸置疑,毒品和药物滥用者的死亡率高于普通人群。国家酗酒和药物滥用防治局(NACADA)描绘了一幅青少年吸毒人数持续上升的严峻图景。本研究提出了由轻度吸毒者(LDA)和重度吸毒者(HDA)驱动的毒品和药物滥用(DSA)的决定论模型。分析表明,当 R0 < 1 时,无毒品平衡(DFE)是局部渐近稳定的,而当 R0 > 1 时,无毒品平衡(DFE)是不稳定的。利用拉普诺夫函数探讨了无药平衡和药物流行平衡(DEE)的全局稳定性。利用中心流形定理进行了分叉分析,其中采用了 Castilo-Chavez 和 Song 所用的方法,发现药物再启动率推动了向后分叉。研究了重要参数对 DSA 的影响,并以图表形式展示了结果。模拟结果表明,推迟青少年接触毒品的时间可以增加对 LDA 和 HDA 的识别和治疗,从而减少肯尼亚的 DSA 威胁。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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