张香红
姓名:张香红 籍贯:陕西西安 民族:汉族 职称:副教授 所在部门(教研室):微分方程教研室 办公室(电话):数学与统计学院716室 电子邮件:xhzhang0322@swu.edu.cn
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2011.09-2017.06: 陕西师范大学,数学与统计学院,理学博士(硕博连读)
2015.09-2016.09: 加拿大约克大学,数学与统计学院,联合培养博士
2007.09-2011.06: 西安文理学院,数学学院,理学学士
2019.09-至今:西南大学,数学与统计学院,副教授
2017.08-2019.08: 加拿大约克大学,数学与统计学院,博士后
2019.01-2019.06: 加拿大约克大学,数学与统计学院,Contract Teaching,《MATH1300》
研究方向为生物数学,研究聚焦于微分动力系统的稳定性理论和分支分析、非光滑动力系统的理论和数值分析、数据驱动的预测预警分析,以及其在生命科学与公共卫生等领域的应用研究,特别是传染病传播与防控、有害生物控制及生物资源管理等方面。已在《Journal of Mathematical Biology》、《PLOS Neglected Tropical Diseases》、《Journal of Dynamics and Differential Equations》、《Bulletin of Mathematical Biology》、《Mathematical Biosciences》、《Journal of Theoretical Biology》、《Nonlinear Analysis: Real World Applications》等国内外生物数学或应用数学领域权威期刊发表SCI学术论文20余篇。主持或参与国家级和省部级科研项目10余项。
《常微分方程》、《高等数学》、《概率论与数理统计》、《概率论》、《线性代数I(双语)》、《线性代数II》等。
1. 中国数学会生物数学专业委员会青年工作委员会委员;
2. 担任Proceedings of the Royal Society B、Journal of Theoretical Biology、Journal of Biological Dynamics、Discrete and Continuous Dynamical Systems Series B、Natural Resource Modeling等多个SCI权威学术期刊审稿人。
[1] 国家自然科学基金面上项目,蚊媒传染病综合治理的非光滑动力系统研究(12471473),2025.01-2028.12,在研,主持;
[2] 国家自然科学基金青年项目,登革热蚊媒新型综合防控与基因进化的混合多尺度系统研究(12001448),2021.01-2023.12,已结题,主持;
[3] 重庆市自然科学基金面上项目,蚊媒传统防控与新型沃尔巴克细菌生物防控的非光滑动力系统研究(cstc2020jcyj-msxmX0432),2020.07-2023.06,已结题,主持;
[4] 重庆市留学人员回国创新支持计划项目,基于切换系统研究境外输入管理与病毒变异对我国COVID-19疫情反弹与综合防控的影响(cx2022077),2022.07-2024.06,已结题,主持;
[5] 中央高校基本科研业务费专项资金项目,西南大学能力提升项目(SWU-KT24004),2024.05-2027.04,在研,主持;
[6] 中央高校基本科研业务费专项资金项目, 西南大学引进人才计划项目(SWU019046),2019.10-2022.12,已结题,主持;
[7] 中央高校基本科研业务费专项资金项目,陕西师范大学优秀博士学位论文资助(S2014YB01),2014.05-2017.05,已结题,主持;
[8] 国家自然科学基金面上项目,传染病传播中的进化动力学机制及多尺度建模研究(12471474),2025.01-2028.12,44万,在研,参研;
[9] 国家自然科学基金面上项目,基于个体的多尺度传染病动力学模型(12071382),2021-01至2024-12,已结题,参研;
[10]国家自然科学基金面上项目,雾霾与典型疾病复杂关联的统计计算与动力学模型研究(61772017),2018-01至2021-12,参研。
代表性论文(注:见刊年份的影响因子、中科院分区、JCR分区;#表示生物数学专业权威期刊,*表示通讯作者)
[1] Xianghong Zhang, Xianning Liu, Yazhi Li, Qiyong Liu, Huaiping Zhu*. Modelling the effects of Wolbachia-carrying male augmentation and mating competition on the control of dengue fever [J]. Journal of Dynamics and Differential Equations 37(2025): 149-189.(IF2025=1.3, JCR-Q2,中科院4区,微分动力系统领域权威期刊)
[2] Xianghong Zhang, Juan Li, Xianning Liu*. Birth-pulse models to assess the effects of Wolbachia-carrying mosquito releases on the control of dengue fever [J]. Applied Mathematical Modelling 134 (2024):175-197. (IF2024=4.4, JCR-Q1, 中科院1区)
[3] Xianghong Zhang, Hua, He, Kaifa Wang*, Huaiping Zhu. Dynamics and simulations of impulsive population models involving integrated mosquito control strategies and fractional derivatives for dengue control [J]. Fractal and Fractional 8 (2024): 624. (IF2024=3.6, JCR-Q1, 中科院1区)
[4] Xianghong Zhang, Yunna Song, Sanyi Tang, Haifeng Xue, Wanchun Chen, Lingling Qin, Shoushi Jia, Ying Shen, Shusen Zhao, Huaiping Zhu*. Models to assess imported cases on the rebound of COVID-19 and design a long-term border control strategy in Heilongjiang Province, China [J]. Mathematical Biosciences and Engineering 19 (2022): 1-33. (IF2022=2.194, JCR-Q3, 中科院4区)
[5] Xianghong Zhang, Xinmiao Rong, Juan Li, Meng Fan, Youming Wang, Xiangdong Sun, Huaiping Zhu*. Modeling the outbreak and control of African swine fever virus in large-scale pig farms [J]. Journal of Theoretical Biology 526 (2021): 110798. (IF2021=2.691, JCR-Q2, 中科院3区)
[6] Xianghong Zhang, Qiyong Liu, Huaiping Zhu*. Modeling and dynamics of Wolbachia-infected male releases and mating competition on mosquito control [J]. Journal of Mathematical Biology 81(2020): 243-276. (IF2020=2.259, JCR-Q2, 中国数学会T1)
[7] Xianghong Zhang, Sanyi Tang, Qiyong Liu, Robert A. Cheked, Huaiping Zhu*. Models to assess the effects of non-identical sex ratio augmentations of Wolbachia-carrying mosquitoes on the control of dengue disease[J]. Mathematical Biosciences. 299 (2018): 58-72. (IF2018=1.680, JCR-Q3,中科院4区)
[8] Xianghong Zhang, Sanyi Tang*, Robert A. Cheke, Huaiping Zhu. Modeling the effects of augmentation strategies on the control of dengue fever with an impulsive differential equation[J]. Bulletin of Mathematical Biology, 78 (2016): 1968-2010. (IF2016= 1.263, JCR-Q3,中科院4区)
[9] Xianghong Zhang, Sanyi Tang*, Robert A. Cheke. Models to assess how best to replace dengue virus vectors with Wolbachia-infected mosquito populations[J]. Mathematical Biosciences, 269 (2015): 164-1775. (IF2015= 1.256, JCR-Q3, 中科院4区)
[10] Xianghong Zhang, Sanyi Tang*, Robert A. Cheke. Birth-pulse models of Wolbachia-induced cytoplasmic incompatibility in mosquitoes for dengue virus control[J]. Nonlinear Analysis: Real World Applications, 22 (2015): 236-258. (IF2015=2.2, JCR-Q1,中科院1区)
[11] Xianghong Zhang, Sanyi Tang*. Existence of multiple sliding segments and stability analysis of Filippov prey-predator model[J]. Applied Mathematics and Computation, 239 (2014): 265-284. (IF2014=1.551, JCR-Q1,中科院2区)
[12] Xianghong Zhang, Sanyi Tang. Filippov ratio-dependent prey-predator model with threshold policy control[J]. Abstract and Applied Analysis, Volume 2013, Article ID 280945. (IF2013= 1.274, JCR-Q1,中科院2区)
[13] Yue Zhang, Xianghong Zhang*, Kaifa Wang. Impact of temperature and imported cases on the spread and control of dengue fever: case study of 2019 dengue fever epidemic in Guangzhou and Jinghong cities, China [J]. PLOS Neglected Tropical Diseases, 2025, accepted. (IF2025=3.4, JCR-Q1, 中科院1区)
[14] Ying Xin, Yuming Wang, Qiang Li, Xianghong Zhang*, Kaifa Wang*, Guangyu Huang*. Dynamic predicting hepatitis B surface antigen decline rate during treatment for patients with chronic hepatitis B [J]. Infectious Disease Modelling 10(2025): 979-988. (IF2025=2.5,中科院1区)
[15] Sha He, Xianghong Zhang, Juhua Liang, Sanyi Tang*. Multiscale modelling the effects of CI genetic evolution in mosquito population on the control of dengue fever. Scientific Reports, 7 (2017): 13895. (IF2017= 4.122, JCR-Q1, 中科院3区)
[16] Juan Li, Guihong Fan, Xianghong Zhang, Huaiping Zhu*. A Two-Stage Model with Distributed Delay for Mosquito Population Dynamics [J]. Journal of Dynamics and Differential Equations (2025): 1-24. (IF2025=1.3, JCR-Q2,微分动力系统领域权威期刊)
[17] Juan Li, Wendi Bao, Xianghong Zhang, Yongzhong Song, Zhigui Lin, Huaiping Zhu*, Modelling the transmission and control of COVID-19 in Yangzhou city with the implementation of Zero-COVID policy[J]. Mathematical Biosciences and Engineering, 20(2023):15781−15808. (IF2023=2.6, JCR-Q3, 中科院4区)
[18] Yiqing Yang, Wen Wen, Yini Chen, Ming Yang, Xi Zhou, Guoli Xie, Xianghong Zhang, Peng Wei*, Lin He*. Unveiling fenpropathrin resistance levels in field populations of Tetranychus cinnabarinus (Boisduval): Insights, risks, and RNAi strategy [J]. Pesticide Biochemistry and Physiology 202 (2024): 105914. (IF2024=4.2, JCR-Q1,中科院1区)
1.2020.05,重庆市海外高层次人才第四类,重庆市人力资源和社会保障;
2.2019.12,陕西省优秀博士学位论文,陕西省教育厅;
3.2016.12,博士研究生国家奖学金,国家教育部。