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DOI10.3390/rs11141736
Improvement of Remote Sensing-Based Assessment of Defoliation of Pinus spp. Caused by Thaumetopoea pityocampa Denis and Schiffermuller and Related Environmental Drivers in Southeastern Spain
Perez-Romero, Javier1; Maria Navarro-Cerrillo, Rafael1; Palacios-Rodriguez, Guillermo1; Acosta, Cristina1; Javier Mesas-Carrascosa, Francisco2
发表日期2019
ISSN2072-4292
卷号11期号:14
英文摘要

This study used Landsat temporal series to describe defoliation levels due to the Pine Processionary Moth (PPM) in Pinus forests of southeastern Andalusia (Spain), utilizing Google Earth Engine. A combination of remotely sensed data and field survey data was used to detect the defoliation levels of different Pinus spp. and the main environmental drivers of the defoliation due to the PPM. Four vegetation indexes were also calculated for remote sensing defoliation assessment, both inside the stand and in a 60-m buffer area. In the area of study, all Pinus species are affected by defoliation due to the PPM, with a cyclic behavior that has been increasing in frequency in recent years. Defoliation levels were practically equal for all species, with a high increase in defoliation levels 2 and 3 since 2014. The Moisture Stress Index (MSI) and Normalized Difference Infrared Index (NDII) exhibited similar overall (p < 0.001) accuracy in the assessment of defoliation due to the PPM. The synchronization of NDII-defoliation data had a similar pattern for all together and individual Pinus species, showing the ability of this index to adjust the model parameters based on the characteristics of specific defoliation levels. Using Landsat-based NDII-defoliation maps and interpolated environmental data, we have shown that the PPM defoliation in southeastern Spain is driven by the minimum temperature in February and the precipitation in June, March, September, and October. Therefore, the NDII-defoliation assessment seems to be a general index that can be applied to forests in other areas. The trends of NDII-defoliation related to environmental variables showed the importance of summer drought stress in the expansion of the PPM on Mediterranean Pinus species. Our results confirm the potential of Landsat time-series data in the assessment of PPM defoliation and the spatiotemporal patterns of the PPM; hence, these data are a powerful tool that can be used to develop a fully operational system for the monitoring of insect damage.


WOS研究方向Remote Sensing
来源期刊REMOTE SENSING
文献类型期刊论文
条目标识符http://gcip.llas.ac.cn/handle/2XKMVOVA/100263
作者单位1.Univ Cordoba, ERSAF, Dept Forestry Engn, Silviculture Lab,DendrodatLab,Dendrochronol & Cli, Campus Rabanales,Crta 4,Km 396, E-14071 Cordoba, Spain;
2.Univ Cordoba, Dept Graph Engn & Geomat, Campus Rabanales,Crta 4,Km 396, E-14071 Cordoba, Spain
推荐引用方式
GB/T 7714
Perez-Romero, Javier,Maria Navarro-Cerrillo, Rafael,Palacios-Rodriguez, Guillermo,et al. Improvement of Remote Sensing-Based Assessment of Defoliation of Pinus spp. Caused by Thaumetopoea pityocampa Denis and Schiffermuller and Related Environmental Drivers in Southeastern Spain[J],2019,11(14).
APA Perez-Romero, Javier,Maria Navarro-Cerrillo, Rafael,Palacios-Rodriguez, Guillermo,Acosta, Cristina,&Javier Mesas-Carrascosa, Francisco.(2019).Improvement of Remote Sensing-Based Assessment of Defoliation of Pinus spp. Caused by Thaumetopoea pityocampa Denis and Schiffermuller and Related Environmental Drivers in Southeastern Spain.REMOTE SENSING,11(14).
MLA Perez-Romero, Javier,et al."Improvement of Remote Sensing-Based Assessment of Defoliation of Pinus spp. Caused by Thaumetopoea pityocampa Denis and Schiffermuller and Related Environmental Drivers in Southeastern Spain".REMOTE SENSING 11.14(2019).
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