[1] 黄涛,李维薇,张英俊. 草原生态保护与牧民持续增收之辩[J]. 草业科学,2010,27(9):1-4 [2] 陈思. 农业部《草畜平衡管理办法》出台促进草原畜牧业可持续性发展[J]. 草业科学,2005(3):49 [3] 安沙舟. 新疆伊犁地区禾本科植物种质资源及其评价[J]. 草原与草坪,2001,1(2):15-19 [4] 范天文,闫凯,靳瑰丽. 伊犁河谷天然草地退化现状及修复措施[J]. 草业科学,2008,25(3):22-25 [5] Fensholt R,Langanke T,Rasmussen K,et al. Greenness in semi-arid areas across the globe 1981-2007:An earth observing satellite based analysis of trends and drivers[J]. Remote Sensing of Environment,2012,121(2):144-158 [6] Zhang T T,Zeng S L,Gao Y,et al. Using hyperspectral vegetation indices as a proxy to monitor soil salinity[J]. Ecological Indicators,2011,11(6):1552-1562 [7] Tucker C J. Red and photographic infrared linear combinations for monitoring vegetation[J]. Remote Sensing of Environment,1979,8(2):127-150 [8] Peng J,Liu Z H,Liu Y H,et al. Trend analysis of vegetation dynamics in Qinghai-Tibet Plateau using Hurst Exponent[J]. Ecological Indicators,2012,14(1):28-39 [9] 闫俊杰,乔木,周宏飞,等. 基于MODIS/NDVI的新疆伊犁河谷植被变化[J]. 干旱区地理,2013,36(3):512-519 [10] 李璠,徐维新. 2000-2015年青海省不同功能区NDVI时空变化分析[J]. 草地学报,2017,25(4):701-710 [11] 张惜伟,汪季,高永,等. 近15年呼伦贝尔沙质草原植被覆盖变化对气候因子的响应[J]. 草地学报,2018,26(1):62-69 [12] 周鑫,盛建东,张文太,等. 基于MODIS数据的伊犁地区草地地上生物量反演[J]. 草地学报,2015,23(1):27-33 [13] 张旭琛,朱华忠,钟华平,等. 新疆伊犁地区草地植被地上生物量遥感反演[J]. 草业学报,2015,24(6):25-34 [14] 尚二萍,张红旗. 1980s-2010s新疆伊犁河谷草地碳存储动态评估[J]. 资源科学,2016,38(7):1229-1238 [15] 闫俊杰,黄辉,崔东,等. 2001年~2015年伊犁河谷草地植被覆盖度时空变化特征[J]. 华中师范大学学报(自然科学版),2017,51(6):865-872 [16] 闫俊杰,黄辉,崔东,等. 伊犁河谷草地退化及其对生态服务价值的影响[J]. 生态经济,2018,34(1):191-196 [17] 刘芳,张红旗,董光龙. 伊犁河谷草地植被NDVI变化及其降水敏感性特征[J]. 资源科学,2014,36(8):1724-1731 [18] 刘洋,李诚志,刘志辉,等. 1982-2013年基于GIMMS-NDVI的新疆植被覆盖时空变化[J]. 生态学报,2016,36(19):6198-6208 [19] Hurst H. Long-term storage capacity of reservoirs[J]. Transactions of the American Society of Civil Engineers,1951(116):770-799 [20] 李净,刘红兵,李龙,等. 基于多源遥感数据集的近30a西北地区植被动态变化研究[J]. 干旱区地理,2016,39(2):387-394 [21] 祝稳. 西北干旱区植被覆盖动态及其对极端气温和降水过程的响应[D]. 兰州:西北师范大学,2015 [22] 焦珂伟,高江波,吴绍洪,等. 植被活动对气候变化的响应过程研究进展[J]. 生态学报,2018,38(6):2229-2238 [23] Kawabata A,Ichii K,Yamaguchi Y. Global monitoring of interannual changes in vegetation activities using NDVI and its relationships to temperature and precipitation[J]. International Journal of Remote Sensing,2001,22(7):1377-1382 [24] 杨雪梅,杨太保,刘海猛,等. 气候变暖背景下近30a北半球植被变化研究综述[J]. 干旱区研究,2016,33(2):379-391 [25] Chen B X,Zhang X Z,Tao J,et al. The impact of climate change and anthropogenic activities on alpine grassland over the Qinghai-Tibet Plateau[J]. Agricultural and Forest Meteorology,2014(189-190):11-18 [26] 张仁平. 新疆地区草地NPP和物候对气候变化的响应研究[D]. 兰州:兰州大学,2017 [27] Zhang Q Y,Wu S H,Zhao D SH,et al. Temporal-spatial Changes in Inner Mongolian Grassland Degradation during Past Three Decades[J]. Agricultural Science & Technology,2013,14(4):676-683 [28] 韦惠兰,祁应军. 基于遥感监测的青藏高原草地退化及其人文驱动力分析[J]. 草业科学,2016,33(12):2576-2586 [29] Jiang L L,Guli·J,Bao A M,et al. Vegetation dynamics and responses to climate change and human activities in Central Asia[J]. Science of the Total Environment,2017(599-600):967-980 [30] Sun Y L,Yang Y L,Zhang L,et al. The relative roles of climate variations and human activities in vegetation change in North China[J]. Physics and Chemistry of the Earth,2015(87-88):67-78 [31] Evans J,Geerken R. Discrimination between climate and human-induced dryland degradation[J]. J.Arid Environ,2004(57):535-554 [32] Wang T,Sun JG,Han H,et al. The relative role of climate change and human activities in the desertification process in Yulin region of northwest China[J]. Environ Monit Assess,2012(184):7165-7173 |