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副教授
张娟

张娟, 博士,硕导。 研究方向为生物数学,主要从事于疾病动力学建模、数据分析、数值模拟、动力学理论分析、随机过程等研究工作。主持国家自然科学基金项目2项,省部级项目2项,横向项目2项。在国内外重要学术期刊发表论文30余篇。2015年参与动物疫情风险分析(中国农业出版社)的编写。2022年获得山西省科技奖(自然科学类)二等奖(排名第4),2016年获得山西省科技奖(自然科学类)一等奖(排名第4),2014年获得教育部高等学校科学研究优秀成果奖(自然科学类)二等奖(排名第5)。

联系方式:zhangjuan1020@sxu.edu.cn


教育经历:

2009/09-2015/07  中北大学,应用数学专业,研究生

2003/09-2007/07  中国石油大学(华东),数学与应用数学专业,本科


工作经历:

2015/07-至今     山西大学,复杂系统研究所

2016/09-2017/09   Memorial University of Newfoundland(加拿大)访学


教学工作:

本科生:《微积分》《大学数学》《概率论与数理统计》

研究生:《生物数学基础》


主持项目:

[1] 国家自然科学基金(青年科学基金),项目名称:中国口蹄疫传播动力学建模及防控措施研究,项目批准号:11601292,执行年限:2017.01-2019.12,经费:19万.

[2] 横向项目,项目名称:城镇职工养老保险收支平衡机制研究-基于山西省实证研究, 执行年限: 2015,经费:2万.

[3] 横向项目,项目名称:禽流感传播动力学模型构建及影响因素评估,执行年限:2017.9.1 - 2018.2.28, 经费:6万.

[4] 山西省面上青年基金项目,项目名称:H5高致病禽流感病毒变异与传播动力学研究, 项目编号:201901D211158,执行年限:2019.09-2020.09,经费:3万.

[5] 2021年度留学人员科技活动择优资助项目,项目名称:新型冠状病毒疫苗接种与非药物干预措施评估,项目编号:20210009,执行年限:2021年5月-2024年5月,经费:12万.

[6] 国家自然科学基金(面上基金),项目名称:规模养殖场内动物疫病净化动力学研究,项目批准号:12371493,执行年限:2024.01-2027.12,资助金额:43.5万.


获得奖项:

2014年,教育部自然科学奖二等奖, “种群及其传染病时空演化动力学理论及方法", 靳祯 崔景安 孙桂全 宋国华 张娟

2016年,山西省科技奖(自然科学类)一等奖, "种群斑图与传播动力学", 孙桂全 刘权兴 李莉  张娟 常利利

2018年,入选2018年度山西省“三晋英才”支持计划青年优秀人才

2022年,山西省科技奖(自然科学类)二等奖, "传染病传播的非线性动力学特征研究", 李莉 王震 刘晨 张娟 常利利 李明涛


发表论文:

[30] Miao-Miao Lv, Xiang-Dong Sun, Zhen Jin, Hai-Rong Wu, Ming-Tao Li, Gui-Quan Sun, Xin Pei, Yu-Tong Wu, Ping Liu, Li Li, Juan Zhang(通讯). Dynamic analysis of rabies transmission and elimination in mainland China. One Health. 2023,17,100615.

[29] Xiaomeng Wei, Mingtao Li, Xin Pei, Zhiping Liu, Juan Zhang(通讯). Assessing the effectiveness of the intervention measures of COVID-19 in China based on dynamical method[J]. Infectious Disease Modelling, 2023, 8(1):13.

[28] Jia-Lin Wang, Xin-Long Xiao, Fen-Fen Zhang, Xin Pei, Ming-Tao Li, Ju-Ping Zhang,Juan Zhang*(共同通讯), Gui-Quan Sun*. Forecast of peak infection and estimate of excess deaths in COVID-19 transmission and prevalence in Taiyuan City, 2022 to 2023[J]. Infectious Disease Modelling,2024,9:56-69.

[27] Lei-Shi Wang, Ming-Tao Li, X Pei, Juan Zhang, Gui-Quan Sun, Zhen Jin. Cost assessment of optimal control strategy for brucellosis dynamic model based on economic factors[J].Communications in nonlinear science and numerical simulation, 2023, 124 (2023) 107310. 

[26] Hua-Rong Ren, Ming-Tao Li, You-Ming Wang, Zhen Jin, Juan Zhang(通讯). The risk factor assessment of the spread of foot-and-mouth disease in mainland China. Journal of Theoretical Biology. 2021, 512: 110558.

[25] Yihao Huang, Jing Li, Juan Zhang, Zhen Jin. Dynamical analysis of the spread of African swine fever with the live pig price in China. Mathematical Biosciences and Engineering.2021,18(6): 8123-8148.

[24] Gui-Quan Sun#, Ming-Tao Li#, Juan Zhang#(共同第一), Wei Zhang, Xin Pei, Zhen Jin. Transmission dynamics of brucellosis: Mathematical modelling and applications in China[J]. Computational and Structural Biotechnology Journal. 2020, 18: 3843-3960.

[23] Li M T , Sun G Q , Zhang J , et al. Analysis of COVID-19 transmission in Shanxi Province with discrete time imported cases[J]. Mathematical Biosciences and Engineering, 2020, 17(4): 3710-3720.

[22] Feng Li, Zhen Jin, Juan Zhang. Assessing the Effectiveness of Mass Testing and Quarantine in the Spread of COVID-19 in Beijing and Xinjiang,2020,2021 |Article ID 5510428.  https://doi.org/10.1155/2021/5510428.

[21] Li M T , Cui J , Zhang J , et al. Transmission analysis of COVID-19 with discrete time imported cases: Tianjin and Chongqing as cases[J]. Infectious Disease Modelling, 2021, 6(1).

[20] Huarong Ren,Zhen Jin, Xin Pei,Mingtao Li, Youming Wang; Juan Zhang(通讯) ; Assessment of immunization procedures for foot-and-mouth disease in large-scale pig farms in China based on actual data and dynamics, Animal Diseases, 2022, 2: 3.

[19] Juan Zhang, Gui-Quan Sun, Mingtao Li, Rui Gao, Huarong Ren, Xin Pei, Zhen Jin. COVID-19 Reverse Prediction and Assessment on the Diamond Princess Cruise Ship. Frontiers in Physics.2020, 8,353. doi: 10.3389/fphy.2020.00353

[18]  Juan Zhang, Zhen Jin, Yuan Yuan. Assessing the spread of foot and mouth disease in mainland China by dynamical switching model. Journal of Theoretical Biology 460 (2019) 209–219

[17]  Juan Zhang,Zhen Jin , Li Li . Cost assessment of control measure for brucellosis in Jilin province, China Chaos, Solitons & Fractals. 2017,104: 798 - 805

[16]  Xing, Y., Song, L., Sun, G.-Q., Jin, Z., Zhang, J. Assessing reappearance factors of H7N9 avian influenza in China. Applied Mathematics and Computation. 2017, 309, 192-204.

[15]  Jiang-Hong Hu , Ya-Kui Xue, Gui-Quan Sun , Zhen Jin, Juan Zhang. Global dynamics of a predator–prey system modeling by metaphysiological approach. Applied Mathematics and Computation, 2016, 283: 369–384

[14]  Xia Z Q, Zhang J, Xue Y K, et al. Modeling the Transmission of Middle East Respirator Syndrome Corona Virus in the Republic of Korea. PloS one, 2015, 10(12): e0144778.

[13]  Juan Zhang, Xiang-Dong Sun, Gui-Quan Sun, Qiang Hou, Mingtao Li, Baoxu Huang, Haiyan Wang, Zhen Jin. Prediction and Control of Brucellosis Transmission of Dairy Cows in Zhejiang Province, China. PLoS one,2014, 9(11):e108592.

[12]  Juan Zhang, Zhen Jin, Gui-Quan Sun, Xiang-Dong Sun, You-Ming Wang , Baoxu Huang. Determination of Original Infection Source of H7N9 Avian Influenza by Dynamical Model. Scientific Reports, 2014, 4: 4846.

[11]  Xiaoyun Wang, Lijuan Wei, Juan Zhang. Dynamical analysis and perturbation solution of an SEIR epidemic model. Applied Mathematics and Computation. 2014,232: 479-486.

[10]  Mingtao Li, Guiquan Sun, Yan-Fang Wu, Juan Zhang, Zhen Jin. Transmission dynamics of a multi-group brucellosis model with mixed cross infection in public farm, Applied Mathematics and Computation.2014, 237: 582-594.

[9]  Mingtao Li, Guiquan Sun, Juan Zhang, Zhen Jin, Xiangdong Sun, Youming Wang, Baoxu Huang and Yaohui Zheng. Transmission dynamics and control for a Brucellosis Model in Hinggan League of Inner Mongolia, China. Mathematical Bioscience and Engineering, 2014, 11(5):1115-1137.

[8]  Nie, J., Sun, X.-D., Sun, G.-Q., Zhang, J., Jin, Z.. Modeling the transmission dynamics of dairy cattle brucellosis in Jilin province, China. J. Biol. Syst. 2014, 22 (533).

[7]  Gui-Quan Sun, Juan Zhang, Li-Peng Song, Zhen Jin, Bai-Lian Li..Pattern formation of a spatial predator–prey system. Applied Mathematics and Computation.2013, 218 (22): 11151 -11162.

[6]  Qiang Hou, Xiangdong Sun, Juan Zhang, Yongjun Liu, Youming Wang, Zhen Jin. Modeling the transmission dynamics of sheep brucellosis in Inner Mongolia Autonomous Region, China. Mathematical Biosciences. 2013, 242: 51–58.

[5]  M.T Li, G.Q Sun, J. Zhang and Z. Jin. Global dynamic behavior of a multigroup cholera model with indirect transmission. Discrete Dynamics in Nature and Society, Volume 2013, Article ID 703826.

[4]  Juan Zhang, Zhen Jin, Gui-Quan Sun, Xiangdong Sun, Shuigui Ruan. Spatial spread of rabies in China. J.Appl.Analy.Compu., 2012, 2(1): 111- 126.

[3]  Juan Zhang, Zhen Jin, Gui-Quan Sun, Xiangdong Sun, Shuigui Ruan. Modeling Seasonal Rabies Epidemic in China. Bull. Math. Biol.,2012, 74: 1226–1251

[2]  Li-Peng Song, Zhen Jin, Gui-Quan Sun, Juan Zhang, Xie Han. In?uence of removable devices on computer worms: Dynamic analysis andcontrol strategies. Compu. Math. Appl., 2011, 61: 1823–1829.

[1]  Juan Zhang, Zhen Jin, Gui-Quan Sun, Tao Zhou, Shigui Ruan. Analysis of rabies in China: Transmission Dynamics and Control. PLoS one, 2011, 6(7): e20891.


Last modified: January 5th, 2024