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引起乳房感染的棒状杆菌属的传播动力学。

Transmission dynamics of intramammary infections caused by Corynebacterium species.

机构信息

Norwegian University of Life Sciences, Faculty of Veterinary Medicine, Department of Production Animal Clinical Sciences, PO Box 8146 Dep., N-0033 Oslo, Norway; TINE SA, PO Box 58, N-1430 Ås, Norway.

Norwegian University of Life Sciences, Faculty of Veterinary Medicine, Department of Production Animal Clinical Sciences, PO Box 8146 Dep., N-0033 Oslo, Norway.

出版信息

J Dairy Sci. 2018 Jan;101(1):472-479. doi: 10.3168/jds.2017-13162. Epub 2017 Oct 18.

Abstract

The development of reliable models for transmission of intramammary infections (IMI) is the subject of extensive research. Such models are useful to enhance the identification and understanding of factors that affect pathogen-specific IMI dynamics. Longitudinal transmission models are valuable for predicting infection outbreak risks, quantifying the effectiveness of response tactics, and performing response planning. In this work, we focused on modeling Corynebacterium spp. by using a compartmental model. Previous investigations have considered modeling the transmission dynamics of several bacterial pathogens, but not Corynebacterium spp. We established a Corynebacterium spp. Susceptible-Infectious-Susceptible (SIS) model. We simulated the model numerically by using parameters that we estimated by a generalized linear model approach, using month of study as the time variable. The data, from which the parameters of the model were estimated, were obtained in a field trial conducted in 2 US dairy herds. Altogether, 786 cows were sampled at least once during the 13-mo study period. The total number of quarter milk cultures and cases of IMI caused by Corynebacterium spp. were 11,744 and 556, respectively, in farm A; the corresponding figures for farm B were 11,804 and 179. Our modeling study included only transmission from persistent IMI caused by Corynebacterium spp. within the lactation pens. The rate of new infections was significantly related to preexisting IMI in both farms, underscoring the importance of preexisting Corynebacterium spp. IMI for the transmission of Corynebacterium spp. within lactation pens. The estimated basic reproduction numbers (R) in the 2 farms were 1.18 and 0.98, respectively. The nonsignificant disparity in R was associated with significant differences in cure rates between farms.

摘要

建立可靠的乳腺感染(IMI)传播模型是广泛研究的主题。此类模型有助于增强对影响病原体特异性 IMI 动态的因素的识别和理解。纵向传播模型可用于预测感染爆发风险、量化应对策略的有效性和进行应对规划。在这项工作中,我们专注于使用房室模型对棒状杆菌属进行建模。先前的研究已经考虑了对几种细菌病原体的传播动力学进行建模,但不包括棒状杆菌属。我们建立了棒状杆菌属易感-感染-易感(SIS)模型。我们通过使用广义线性模型方法估计的参数,使用研究月份作为时间变量,对模型进行数值模拟。该模型的参数是从在美国的两个奶牛场进行的现场试验中获得的数据中估计的。在 13 个月的研究期间,至少对 786 头奶牛进行了一次采样。在农场 A 中,总共进行了 11744 次乳房 quarters 培养,由棒状杆菌属引起的 IMI 病例为 556 例;在农场 B 中,相应的数字分别为 11804 次和 179 次。我们的建模研究仅包括在泌乳栏内由棒状杆菌属持续性 IMI 引起的传播。在两个农场中,新感染的发生率与农场内现有的 IMI 显著相关,这强调了先前存在的棒状杆菌属 IMI 对泌乳栏内棒状杆菌属传播的重要性。在这两个农场中,估计的基本繁殖数(R)分别为 1.18 和 0.98。R 的无显著差异与农场之间的治愈率显著差异有关。

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