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. 2018 Jan 12;13(1):e0191443. doi: 10.1371/journal.pone.0191443

Correction: A century of changing flows: Forest management changed flow magnitudes and warming advanced the timing of flow in a southwestern US river

Marcos D Robles, Dale S Turner, Jeanmarie A Haney
PMCID: PMC5766237  PMID: 29329341

The legend for Table 5 is incorrect. The text of the legend is incorrectly placed within the main article text as the third paragraph of the “Climate-flow regression models” heading of the Climate trends subsection of the Results. This paragraph should instead be included as the legend for Table 5. Please see the correct table and legend here.

Table 5. Climate-flow regression models.

Multiple linear regression models explaining variation in annual and monthly total streamflow for the Salt River near Roosevelt, Arizona [60] based on precipitation and temperature at McNary, Arizona [61]. Models built with full dataset (1914–2012) and re-run for two sub-periods. Final models included explanatory variables that were significant (* < = 0.05, ** < = 0.01, *** < = 0.001) and not correlated, except for precipitation polynomial terms that were needed to satisfy assumptions of linear fit (N.S. denotes non-significance for these terms). Months labeled with ‘75’ indicate only 75% of data were used to eliminate serial correlation of model residuals. Regression models described in more detail in methods section and S1 Table.

Model Precipitation Temperature
Monthly Flow Model Type Time Period # Years adj r2 SE Prec 1 Sign p-value Prec 2 Sign p-value Temp 1 Sign p-value Temp 2 Sign p-value
Annual Linear P 1915–2012 84 0.709 0.169 Jul-Jun + ***                  
" Linear P 1915–1963 39 0.721 0.152 Jul-Jun + ***                  
" Linear P, T 1964–2012 45 0.728 0.177 Jul-Jun + ***       Jul-Jun - *      
February Quadratic P, T 1914–2012 88 0.668 0.270 Dec-Feb + *** (Dec-Feb)2 - * Nov - * Feb + ***
" Quadratic P, T 1914–1963 42 0.497 0.311 Dec-Feb + *** (Dec-Feb)2 - *       Feb + **
" Quadratic P, T 1964–2012 46 0.812 0.216 Dec-Feb + *** (Dec-Feb)2 - N.S. Nov - *** Feb + *
March Quadratic P, T 1914–2012 88 0.751 0.212 Nov-Mar + *** (Nov-Mar)2 - *** Mar + *      
" Quadratic P 1914–1963 42 0.637 0.205 Nov-Mar + *** (Nov-Mar)2 - *            
" Quadratic P 1964–2012 46 0.778 0.232 Nov-Mar + *** (Nov-Mar)2 - ***            
April Quadratic P, T 1914–2012 86 0.769 0.199 Dec-Apr + *** (Dec-Apr)2 - ** Nov-Jan - *** Mar - ***
" Quadratic P, T 1914–1963 40 0.595 0.247 Dec-Apr + ** (Dec-Apr)2 - N.S.       Mar - ***
" Quadratic P, T 1964–2012 46 0.879 0.153 Dec-Apr + *** (Dec-Apr)2 - *** Nov-Jan - *** Mar - *
May Quadratic P, T 1914–2012 85 0.820 0.167 Dec-May + *** (Dec-May)2 - ** Nov-Dec - * Mar-Apr - ***
" Quadratic P, T 1914–1963 39 0.657 0.198 Dec-May + *** (Dec-May)2 - *       Mar-Apr - ***
" Quadratic P, T 1964–2012 46 0.896 0.141 Dec-May + *** (Dec-May)2 - ** Nov-Dec - * Mar-Apr - ***
June Quadratic P, T 1914–2012 89 0.732 0.157 Nov-May + *** (Nov-May)2 - N.S. Apr-May - ***      
" Quadratic P, T 1914–1963 43 0.604 0.171 Nov-May + * (Nov-May)2 - N.S. Apr-May - *      
" Quadratic P, T 1964–2012 46 0.801 0.149 Nov-May + *** (Nov-May)2 - N.S. Apr-May - *      
July75 Linear P 1914–2012 67 0.278 0.181 Jan-Mar + ** Jul + ***            
" Linear P 1914–1963 33 0.279 0.214       Jul + ***            
" Linear P 1964–2012 34 0.280 0.144 Jan-Mar + * Jul + **            
August75 Linear P, T 1914–2012 69 0.405 0.210 Jul-Aug + ***       Aug - **      
" Linear P 1914–1963 33 0.523 0.186 Jul-Aug + ***                  
" Linear P, T 1964–2012 36 0.369 0.221 Jul-Aug + ***       Aug - **      
September Linear P, T 1914–2012 92 0.435 0.211 Aug + *** Sep + *** Sep - **      
" Linear P 1914–1963 44 0.475 0.230 Aug + ** Sep + ***            
" Linear P, T 1964–2012 48 0.382 0.193 Aug + * Sep + *** Sep - *      
November75 Linear P, T 1914–2012 71 0.552 0.190 Oct + *** Nov + *** Oct - *      
" Linear P 1914–1963 35 0.205 0.242 Oct + * Nov + **            
" Linear P 1964–2012 36 0.809 0.130 Oct + *** Nov + ***            

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