Date of download: 6/28/2016 Copyright © 2016 SPIE. All rights reserved. Seasonal frequency of Chortoicetes terminifera infestation in eastern Australia,

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Date of download: 6/28/2016 Copyright © 2016 SPIE. All rights reserved. Seasonal frequency of Chortoicetes terminifera infestation in eastern Australia, using 1986 to 2007 locust survey and control data, covering 65 season-generations gridded to 0.25×0.25 deg. Density threshold >30 m2 for nymphs, >5000/ha for adults. Frequency graded from white=0 to black=15 seasons. Areas hatched green are unsuitable habitat. APLC operations area boundary is shown in red. Figure Legend: From: Satellite normalized difference vegetation index data used in managing Australian plague locusts J. Appl. Remote Sens. 2013;7(1): doi: /1.JRS

Date of download: 6/28/2016 Copyright © 2016 SPIE. All rights reserved. Example of NDVI image for February 2004 displayed as relative NDVI (r-NDVI), with non-habitat areas masked gray, showing APLC survey and control data for February Figure Legend: From: Satellite normalized difference vegetation index data used in managing Australian plague locusts J. Appl. Remote Sens. 2013;7(1): doi: /1.JRS

Date of download: 6/28/2016 Copyright © 2016 SPIE. All rights reserved. Map of APLC Chortoicetes terminifera control locations (October 1991 to April 2009) by season, showing seasonal rainfall regions. White areas represent habitats mostly unsuitable for locust breeding. Figure Legend: From: Satellite normalized difference vegetation index data used in managing Australian plague locusts J. Appl. Remote Sens. 2013;7(1): doi: /1.JRS

Date of download: 6/28/2016 Copyright © 2016 SPIE. All rights reserved. Seasonal trends in r-NDVI for nymph (band) and adult (swarm) control (1991 to 2009), showing median, interquartile range, and data range (maximum monthly r-NDVI) at control and 2 previous months (previous, prev_2). Seasons—(a, b) spring (September to November), (c, d) summer (December to February) and (e, f) autumn (March to May). Figure Legend: From: Satellite normalized difference vegetation index data used in managing Australian plague locusts J. Appl. Remote Sens. 2013;7(1): doi: /1.JRS

Date of download: 6/28/2016 Copyright © 2016 SPIE. All rights reserved. Comparison of r-NDVI and NDVI values for December control and previous month (1991–2008). Nymph (band) control (a, b) by region (1-arid, 3-summer rainfall) and adult (swarm) control (c, d) by region (1, 2-uniform-winter maximum). Plots show median, interquartile range, and data range for maximum monthly r-NDVI (a, c) and NDVI (b, d). Figure Legend: From: Satellite normalized difference vegetation index data used in managing Australian plague locusts J. Appl. Remote Sens. 2013;7(1): doi: /1.JRS

Date of download: 6/28/2016 Copyright © 2016 SPIE. All rights reserved. Comparison of r-NDVI and NDVI values for February control and previous month (1992–2009). Nymph (band) control (a, b) and adult (swarm) control (c, d) by region (1-arid,3-summer rainfall). Plots show median, interquartile range, and data range for maximum monthly r-NDVI (a,c) and NDVI (b, d). Figure Legend: From: Satellite normalized difference vegetation index data used in managing Australian plague locusts J. Appl. Remote Sens. 2013;7(1): doi: /1.JRS

Date of download: 6/28/2016 Copyright © 2016 SPIE. All rights reserved. Comparison of r-NDVI and NDVI values for April control and previous month (1992–2009). Nymph (band) control (a, b) and adult (swarm) control (c, d) by region (1-arid,3-summer rainfall). Plots show median, interquartile range, and data range for maximum monthly r-NDVI (a, c) and NDVI (b, d). Figure Legend: From: Satellite normalized difference vegetation index data used in managing Australian plague locusts J. Appl. Remote Sens. 2013;7(1): doi: /1.JRS