Analysis of bluetongue disease epizootics in sheep of Andhra Pradesh, India using spatial and temporal autocorrelation

被引:0
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作者
Ravichandran Karthikeyan
Ramkumar N Rupner
Shiva Reddy Koti
Nagaraj Jaganathasamy
Michael V. Lalrinzuala
Sachin Sharma
Shikha Tamta
Sukdeb Rotluangkimi
Yashpal Singh Nandi
Zunjar Baburao Malik
Dharmendra Kumar Dubal
Bhoj R. Sinha
Obli Rajendran Singh
机构
[1] ICAR-Indian Veterinary Research Institute,Division of Epidemiology
[2] Indian Institute of Remote Sensing,Department of Geoinformatics
[3] ICMR - National Institute of Epidemiology,Virology Laboratory, Centre for Animal Disease Research and Diagnosis (CADRAD)
[4] ICAR-Indian Veterinary Research Institute,Division of Biological Standardization
[5] ICAR-Indian Veterinary Research Institute,Division of Public Health
[6] ,Livestock Production Management Section
[7] ICAR-Indian Veterinary Research Institute,undefined
[8] ICAR-Indian Veterinary Research Institute,undefined
来源
Veterinary Research Communications | 2022年 / 46卷
关键词
Bluetongue; Moran's I value; Autocorrelation; Cross-correlation; Environmental factors; Google Earth Engine;
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学科分类号
摘要
Bluetongue (BT) disease poses a constant risk to the livestock population around the world. A better understanding of the risk factors will enable a more accurate prediction of the place and time of high-risk events. Mapping the disease epizootics over a period in a particular geographic area will identify the spatial distribution of disease occurrence. A Geographical Information System (GIS) based methodology to analyze the relationship between bluetongue epizootics and spatial–temporal patterns was used for the years 2000 to 2015 in sheep of Andhra Pradesh, India. Autocorrelation (ACF), partial autocorrelation (PACF), and cross-correlation (CCF) analyses were carried out to find the self-dependency between BT epizootics and their dependencies on environmental factors and livestock population. The association with climatic or remote sensing variables at different months lag, including wind speed, temperature, rainfall, relative humidity, normalized difference vegetation index (NDVI), normalized difference water index (NDWI), land surface temperature (LST), was also examined. The ACF & PACF of BT epizootics with its lag showed a significant positive autocorrelation with a month’s lag (r = 0.41). Cross-correlations between the environmental variables and BT epizootics indicated the significant positive correlations at 0, 1, and 2 month’s lag of rainfall, relative humidity, normalized difference water index (NDWI), and normalized difference vegetation index (NDVI). Spatial autocorrelation analysis estimated the univariate global Moran’s I value of 0.21. Meanwhile, the local Moran’s I value for the year 2000 (r = 0.32) showed a high degree of spatial autocorrelation. The spatial autocorrelation analysis revealed that the BT epizootics in sheep are having considerable spatial association among the outbreaks in nearby districts, and have to be taken care of while making any forecasting or disease prediction with other risk factors.
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页码:967 / 978
页数:11
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