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闫岩

发布日期:2023-10-16    作者:     来源:det365中文     点击:







    闫岩,1990年8月出生,理学博士,讲师,硕士生导师。

联系方式:yyanmath@163.com。

主要研究方向:泛函微分方程、时滞差分方程、生物数学。

教育背景: 2020年3月于日本岛根大学综合理工学研究科获得

理学博士学位。

工作经历:2020年7月—至今:det365中文数学系。

科研项目:主持bt365亚洲版体育在线网站中央高校B类项目,bt365亚洲版体育在线网站引进人才科研启动经费,

参与黑龙江省自然科学基金项目。

学术论文:

1. Yan Yan, Jitsuro Sugie, Existence regions of positive periodic solutions for a discrete hematopoiesis model with unimodal production functions, Applied Mathematical Modelling, (2019) 68: 152–168;

2. Yan Yan, Jitsuro Sugie, Global attractivity of a unique positive periodic solution for a first-order nonlinear difference equation with time delays, Journal of Difference Equations And Applications, (2020) 26: 855–870;

3. Yan Yan, Jitsuro Sugie, Global asymptotic stability of a unique positive periodic solution for a discrete hematopoiesis model with unimodal production functions, Monatshefte für Mathematik, (2020) 191: 325–348;

4. Jitsuro Sugie, Yan Yan, Existence of multiple positive periodic solutions for discrete hematopoiesis models with a unimodal production function, Communications in Nonlinear Science and Numerical Simulation, (2020) 89: 105273;

5. Jitsuro Sugie, Yan Yan, Mingzhu Qu, Effect of decimation on positive periodic solutions of discrete generalized Nicholson’s blowflies models with multiple time-varying delays, Communications in Nonlinear Science and Numerical Simulation, (2021) 97: 105731;

6. Yidi Zhao, Shaowen Liu, Yuqi Cao, Qing Ma, Yan Yan, Multiplicity of positive periodic solutions for a Nicholson-type blowflies model with nonlinear decimation terms, Advances in Differential Equations and Control Processes, (2022) 28: 37-53;

7. Yan Yan, Hanqi Zhu, Number of positive periodic solutions for feedback-driven nonlinear differential equation: application to hematopoietic process, Monatshefte für Mathematik, 2023;

8. Yan Yan, Positive periodic solutions for discrete time delay hematopoiesis model with impulses, Open Mathematics, 2023;

9. Yan Yan, Multiplicity of positive periodic solutions for a discrete impulsive blood cell production model, AIMS Mathematics, 2023;