| [1] |
Bivand R, Müller W G, Reder M, 2009. Power calculations for global and local Moran’s I[J]. Computational Statistics & Data Analysis, 53(8): 2859-2872.
DOI
URL
|
| [2] |
Fan J H, Wang Y, Zhou Z, et al., 2016. Dynamic ecological risk assessment and management of land use in the middle reaches of the Heihe River based on landscape patterns and spatial statistics[J]. Sustainability, 8(6): 536.
DOI
URL
|
| [3] |
Li C H, Qin F, Liu Z Z, et al., 2024. Multi-Scenario assessment of landscape ecological risk in the transitional zone between the warm temperate zone and the northern subtropical zone[J]. Frontiers in Ecology and Evolution, 12: 1471164.
DOI
URL
|
| [4] |
Wang S, Xu Q L, Yi J H, 2025. Multi-scale identification of driving forces for landscape ecological risk: A case study of the basin containing three plateau lakes in Yunnan, China[J]. Ecological Indicators, 170: 113037.
DOI
URL
|
| [5] |
Wang W C, Xue X R, Wang Z, et al., 2026. Multiscale driving mechanisms and spatial non-stationarity of landscape ecological risk based on an OPGD-MGWR framework: Evidence from township-level units in the Nanjing metropolitan area (NMA), China[J]. Ecological Indicators, 186: 114840.
DOI
URL
|
| [6] |
Zhang J, Hao X, Li X, et al., 2024. Evaluation and regulation strategy for ecological security in the Tarim River Basin based on the ecological footprint[J]. Journal of Cleaner Production, 435: 140488.
DOI
URL
|
| [7] |
Zhang Z Q, Pan H L, Gan J, et al., 2025. Spatiotemporal evolution and scenario simulation of landscape ecological risk in hilly-gully regions: A case study of Zichang City[J]. Land, 14(12): 2358.
DOI
URL
|
| [8] |
陈全通, 殷浩然, 李艳红, 等, 2022. 秦巴山地景观生态风险的时空分异[J]. 水土保持通报, 42(3): 239-246.
|
|
Chen Q T, Yin H R, Li Y H, et al., 2022. Spatial and temporal differentiation of landscape ecological risk in Qinling-Daba mountains[J]. Bulletin of Soil and Water Conservation, 42(3): 239-246.
|
| [9] |
丁建丽, 葛翔宇, 王敬哲, 2021. 中国艾比湖湿地识别及其时空动态变化[J]. 自然资源学报, 36(8): 1949-1963.
DOI
|
|
Ding J L, Ge X Y, Wang J Z, 2021. Ebinur Lake wetland identification and its spatio-temporal dynamic changes[J]. Journal of Natural Resources, 36(8): 1949-1963.
DOI
URL
|
| [10] |
高彬嫔, 李琛, 吴映梅, 等, 2021. 川滇生态屏障区景观生态风险评价及影响因素[J]. 应用生态学报, 32(5): 1603-1613.
DOI
|
|
Gao B P, Li C, Wu Y M, et al., 2021. Landscape ecological risk assessment and influencing factors in ecological conservation area in Sichuan-Yunnan Provinces, China[J]. Chinese Journal of Applied Ecology, 32(5): 1603-1613.
|
| [11] |
国家林业和草原局, 2023. 新疆: 从 “沙进人退” 到 “绿进沙退” [EB/OL]. [2023-07-04] https://www.forestry.gov.cn/c/www/hm/510100.jhtml.
|
|
National Forestry and Grassland Administration, 2023. Xinjiang: From “sand advancing and people retreating” to “green advancing and sand retreating” [EB/OL]. [2023-07-04]. https://www.forestry.gov.cn/c/www/hm/510100.jhtml.
|
| [12] |
李皓, 翟月鹏, 杨小龙, 等, 2022. 基于层次分析-有序加权平均多准则评估的雄安新区生态安全格局模拟研究[J]. 生态学报, 42(1): 150-160.
|
|
Li H, Zhai Y P, Yang X L, et al., 2022. Simulating ecological security patterns in the Xiong’an New Area based on the multicriteria evaluation of AHP-OWA[J]. Acta Ecologica Sinica, 42(1): 150-160.
|
| [13] |
李鹏辉, 徐丽萍, 张军民, 等, 2020. 干旱区内陆河流域三维生态足迹时空变化分析--以玛纳斯河流域为例[J]. 生态学报, 40(19): 6776-6787.
|
|
Li P H, Xu L P, Zhang J M, et al., 2020. Spatio-temporal changes of three-dimensional ecological footprint in inland river basins in Arid Region: A case study of the Manas River Basin[J]. Acta Ecologica Sinica, 40(19): 6776-6787.
|
| [14] |
李思琪, 王海兵, 袁晓飞, 等, 2025. 毛乌素沙地景观生态风险时空演变及驱动力[J]. 中国沙漠, 45(5): 230-240.
DOI
|
|
Li S Q, Wang H B, Yuan X F, et al., 2025. Temporal and spatial evolution of landscape ecological risks and driving forces in the Mu Us Sandy Land[J]. Journal of Desert Research, 45(5): 230-240.
DOI
|
| [15] |
刘敏, 蔡海生, 张学玲, 等, 2025. 基于Geodetector-GTWR的江西省景观生态风险及驱动因素[J]. 环境科学, 46(10): 6455-6464.
|
|
Liu M, Cai H S, Zhang X L, et al., 2025. Landscape ecological risk and driving factors in Jiangxi Province based on Geodetector-GTWR[J]. Environmental Science, 46(10): 6455-6464.
DOI
URL
|
| [16] |
刘时栋, 徐丽萍, 张婕, 2019. 新疆土地生态安全时空变化[J]. 生态学报, 39(11): 3871-3884.
|
|
Liu S D, Xu L P, Zhang J, 2019. Spatiotemporal change of land ecological security in Xinjiang[J]. Acta Ecologica Sinica, 39(11): 3871-3884.
|
| [17] |
马丽莎, 郑江华, 彭建, 等, 2024. 新疆生态脆弱性特征及其驱动力[J]. 生态学报, 44(20): 9053-9066.
|
|
Ma L S, Zheng J H, Peng J, et al., 2024. Research on the characteristics and driving forces of ecological vulnerability in Xinjiang[J]. Acta Ecologica Sinica, 44(20): 9053-9066.
|
| [18] |
彭建, 党威雄, 刘焱序, 等, 2015. 景观生态风险评价研究进展与展望[J]. 地理学报, 70(4): 664-677.
DOI
|
|
Peng J, Dang W X, Liu Y X, et al., 2015. Review on landscape ecological risk assessment[J]. Acta Geographica Sinica, 70(4): 664-677.
DOI
|
| [19] |
乔斌, 曹晓云, 孙玮婕, 等, 2023. 基于生态系统服务价值和景观生态风险的生态分区识别与优化策略--以祁连山国家公园青海片区为例[J]. 生态学报, 43(3): 986-1004.
|
|
Qiao B, Cao X Y, Sun W J, et al., 2023. Ecological zoning identification and optimization strategies based on ecosystem service value and landscape ecological risk: Taking Qinghai area of Qilian Mountain National Park as an example[J]. Acta Ecologica Sinica, 43(3): 986-1004.
|
| [20] |
孙丽蓉, 周冬梅, 岑国璋, 等, 2021. 基于地理探测器模型的疏勒河流域景观生态风险评价及驱动因素分析[J]. 干旱区地理, 44(5): 1384-1395.
DOI
|
|
Sun L R, Zhou D M, Cen G Z, et al., 2021. Landscape ecological risk assessment and driving factors of the Shule River Basin based on the geographic detector model[J]. Arid Land Geography, 44(5): 1384-1395.
DOI
|
| [21] |
田颖, 李冰, 王水, 2015. 江苏沿海地区景观格局的生态风险研究[J]. 水土保持研究, 22(1): 241-245, 251.
|
|
Tian Y, Li B, Wang S, 2015. Study on landscape ecological risk of the coastal areas of Jiangsu Province[J]. Research of Soil and Water Conservation. 22(1): 241-245, 251.
|
| [22] |
王成武, 尧良杰, 汪宙峰, 等, 2024. 2000-2020年三江源地区景观生态风险评价及驱动因素[J]. 干旱区研究, 41(11): 1908-1920.
DOI
|
|
Wang C W, Yao L J, Wang Z F, et al., 2024. Landscape ecological risk assessment and driving factors analysis in the Three River Source Region from 2000 to 2020[J]. Arid Zone Research, 41(11): 1908-1920.
DOI
|
| [23] |
汪勇政, 梁哲, 余浩然, 等, 2024. 基于PLUS模型的汾河流域景观生态风险时空分异及多情景模拟[J]. 生态科学, 43(1): 35-45.
|
|
Wang Y Z, Liang Z, Yu H R, et al., 2024. Spatial-temporal differentiation and multi-scenario simulation of landscape ecological risk assessment in Fenhe River Basin based on PLUS model[J]. Ecological Science, 43(1): 35-45.
|
| [24] |
谢小平, 陈芝聪, 王芳, 等, 2017. 基于景观格局的太湖流域生态风险评估[J]. 应用生态学报, 28(10): 3369-77.
DOI
|
|
Xie X P, Chen Z C, Wang F, et al., 2017. Ecological risk assessment of Taihu Lake Basin based on landscape pattern[J]. Chinese Journal of Applied Ecology, 28(10): 3369-77.
|
| [25] |
杨柳, 李志英, 王绍邦, 等, 2025. 基于土地利用转型的昆明市景观生态风险时空演变[J]. 西北林学院学报, 40(6): 213-220, 240.
|
|
Yang L, Li Z Y, Wang S B, et al., 2025. Spatial and temporal evolution of landscape ecological risk in Kunming based on land use transition[J]. Journal of Northwest Forestry University, 40(6): 213-220, 240.
|
| [26] |
张子涵, 王瑾杰, 丁建丽, 等, 2025. 基于PLUS模型的艾比湖流域景观生态风险分析及预测[J]. 干旱区地理, 48(2): 308-322.
DOI
|
|
Zhang Z H, Wang J J, Ding J L, et al., 2025. Analysis and prediction of landscape ecological risk in Ebinur Lake Basin based on PLUS model[J]. Arid Land Geography, 48(2): 308-322.
DOI
|
| [27] |
张芷祺, 程琳琳, 李明睿, 等, 2026. 基于景观生态风险评价的生态安全格局构建: 以北京生态涵养区为例[J]. 环境科学, 47(5): 3285-3296.
|
|
Zhang Z Q, Cheng L L, Li M R, et al., 2026. Ecological security pattern construction based on landscape ecological risk assessment: A case study of Beijing ecological conservation area[J]. Environmental Science, 47(5): 3285-3296.
|
| [28] |
周玉祥, 赵玉, 聂仁东, 等, 2023. 下辽河平原土地沙漠化程度及预测研究[J]. 生态环境学报, 32(6): 1133-1139.
DOI
|
|
Zhou Y X, Zhao Y, Nie R D, et al., 2023. Characterization and prediction of land desertification in the lower Liaohe River Plain[J]. Ecology and Environmental Sciences, 32(6): 1133-1139.
|