School of Mathematics, Taiyuan University of Technology, Taiyuan 030024, China.
Math Biosci Eng. 2022 Apr 24;19(6):6396-6414. doi: 10.3934/mbe.2022300.
Brucellosis is a zoonotic disease caused by Brucella, and it is an important infectious disease all over the world. The prevalence of brucellosis in the Chinese mainland has some spatial characteristics besides the temporal trend in recent years. Due to the large-scale breeding of sheep and the frequent transportation of sheep in various regions, brucellosis spreads wantonly in pastoral areas, and human brucellosis spreads from traditional pastoral areas and semi-pastoral areas in the north to non-pastoral areas with low incidence in the south. In order to study the influence of sheep immigration on the epidemic transmission, a patch dynamics model was established. In each patch, the sub-model was composed of humans, sheep and Brucella. The basic reproduction number, disease-free equilibrium and positive equilibrium of the model were discussed. On the other hand, taking Shanxi Province and Hebei Province as examples, we carried out numerical simulations. The results show that the basic reproduction numbers of Shanxi Province and Hebei Province are 0.7497 and 0.5022, respectively, which indicates that the current brucellosis in the two regions has been effectively controlled. To reduce brucellosis faster in the two provinces, there should be a certain degree of sheep immigration from high-infection area to low-infection areas, and reduce the immigration of sheep from low-infection areas to high-infection areas.
布鲁氏菌病是由布鲁氏菌引起的人畜共患疾病,是一种在全球范围内都很重要的传染病。近年来,除了时间趋势外,中国大陆布鲁氏菌病的流行还具有一定的空间特征。由于绵羊的大规模养殖和各地区绵羊的频繁运输,布鲁氏菌病在牧区肆意传播,人类布鲁氏菌病从北方传统牧区和半牧区向南方发病率较低的非牧区传播。为了研究绵羊移民对疫情传播的影响,建立了斑块动态模型。在每个斑块中,子模型由人类、绵羊和布鲁氏菌组成。讨论了模型的基本再生数、无病平衡点和正平衡点。另一方面,以山西省和河北省为例,进行了数值模拟。结果表明,山西省和河北省的基本再生数分别为 0.7497 和 0.5022,这表明目前这两个地区的布鲁氏菌病已得到有效控制。为了在这两个省份更快地降低布鲁氏菌病的发病率,应该在高感染地区向低感染地区有一定程度的绵羊移民,并减少低感染地区向高感染地区的绵羊移民。