[1] Sterling SM, Ducharne A, Polcher J. The impact of global land-cover change on the terrestrial water cycle. Nature Climate Change, 2013, 3: 385-390 [2] Lambin EF, Geist HJ, Lepers E. Dynamics of land-use and land-cover change in tropical regions. Annual Review of Environment and Resources, 2003, 28: 205-241 [3] 张云路, 李雄, 田野. 基于景观生态学“源-汇”理论的市域尺度生态功能分区: 以内蒙古通辽市为例. 生态学报, 2018, 38(1): 65-72 [4] 郭旭东, 谢俊奇. 新时代中国土地生态学发展的思考. 中国土地科学, 2018, 32(12): 1-6 [5] Bai LM, Xiu CL, Feng XH, et al. Influence of urbanization on regional habitat quality: A case study of Changchun City. Habitat International, 2019, 93: 102042 [6] 刘永婷, 杨钊, 徐光来, 等. 基于MGWR模型的皖江城市带生境质量对城镇化的响应研究. 地理科学, 2023, 43(2): 280-290 [7] 陈利根, 龙开胜. 新中国70年城乡土地制度演进逻辑、经验及改革建议. 南京农业大学学报: 社会科学版, 2019, 19(4): 1-10 [8] Wenger AS, Atkinson S, Santini T, et al. Predicting the impact of logging activities on soil erosion and water quality in steep, forested tropical islands. Environmental Research Letters, 2018, 13: 044035 [9] Crooks KR, Burdett CL, Theobald DM, et al. Quantification of habitat fragmentation reveals extinction risk in terrestrial mammals. Proceedings of the National Academy of Sciences of the United States of America, 2017, 114: 7635-7640 [10] Nedeau EJ, Merritt RW, Kaufman MG. The effect of an industrial effluent on an urban stream benthic community: Water quality vs. habitat quality. Environmental Pollution, 2003, 123: 1-13 [11] Rands MRW, Adams WM, Bennun L, et al. Biodiversity conservation: Challenges beyond 2010. Science, 2010, 329: 1298-1303 [12] Zhang JD, Hull V, Huang JY, et al. Natural recovery and restoration in giant panda habitat after the Wenchuan earthquake. Forest Ecology and Management, 2014, 319: 1-9 [13] 林杰, 徐文轩, 杨维康, 等. 卡拉麦里山有蹄类自然保护区蒙古野驴生境适宜性评价. 生物多样性, 2012, 20(4): 411-419 [14] 王志强, 傅建春, 全斌, 等. 扎龙湿地丹顶鹤繁殖生境质量变化. 应用生态学报, 2010, 21(11): 2871-2875 [15] 李胜鹏, 柳建玲, 林津, 等. 基于1980—2018年土地利用变化的福建省生境质量时空演变. 应用生态学报, 2020, 31(12): 4080-4090 [16] Berta AA, Noszczyk T, Soromessa T, et al. The InVEST habitat quality model associated with land use/cover changes: A qualitative case study of the Winike Watershed in the Omo-Gibe Basin, Southwest Ethiopia. Remote Sensing, 2020, 12: 1103 [17] Wu LL, Sun CG, Fan FL. Estimating the characteristic spatiotemporal variation in habitat quality using the InVEST model: A case study from Guangdong-Hong Kong-Macao Greater Bay Area. Remote Sensing, 2021, 13: 1008 [18] 郑可君, 李琛, 吴映梅, 等. 基于价值评估的川滇生态屏障区生境质量时空演变及其影响因素. 生态与农村环境学报, 2022, 38(11): 1377-1387 [19] 张洪, 李中元, 李彦. 基于生态安全的山地城镇土地可持续利用模式研究: 以云南大理市为例. 地理研究, 2019, 38(11): 2681-2694 [20] Wang BX, Cheng WM. Effects of land use/cover on regional habitat quality under different geomorphic types based on InVEST model. Remote Sensing, 2022, 14: 1279 [21] Li MY, Zhou Y, Xiao PN, et al. Evolution of habitat quality and its topographic gradient effect in northwest Hubei Province from 2000 to 2020 based on the InVEST model. Land, 2021, 10: 857 [22] 穆博, 张若兰, 穆涛, 等. 地形梯度视角下郑州城镇建设用地扩张格局时空动态特征. 地域研究与开发, 2022, 41(5): 133-138 [23] Xu LF, Liu X, Tong D, et al. Forecasting urban land use change based on cellular automata and the PLUS model. Land, 2022, 11: 652 [24] Liang X, Guan QF, Clarke KC, et al. Understanding the drivers of sustainable land expansion using a patch-generating land use simulation (PLUS) model: A case study in Wuhan, China. Computers, Environment and Urban Systems, 2021, 85: 101569 [25] 李琛, 高彬嫔, 吴映梅, 等. 基于PLUS模型的山区城镇景观生态风险动态模拟. 浙江农林大学学报, 2022, 39(1): 84-94 [26] 杨朔, 苏昊, 赵国平. 基于PLUS模型的城市生态系统服务价值多情景模拟: 以汉中市为例. 干旱区资源与环境, 2022, 36(10): 86-95 [27] 张经度, 梅志雄, 吕佳慧, 等. 纳入空间自相关的FLUS模型在土地利用变化多情景模拟中的应用. 地球信息科学学报, 2020, 22(3): 531-542 [28] 云南省人民政府. 云南省人民政府关于印发滇中城市群发展规划的通知[EB/OL]. (2020-08-26)[2023-01-15]. https://www.yn.gov.cn/zwgk/zcwj/yzf/202008/t20200826_209715.html [29] 张学儒, 周杰, 李梦梅. 基于土地利用格局重建的区域生境质量时空变化分析. 地理学报, 2020, 75(1): 160-178 [30] 岳文泽, 夏皓轩, 吴桐, 等. 浙江省生境质量时空演变与生态红线评估. 生态学报, 2022, 42(15): 6406-6417 [31] Getis A, Ord JK. The analysis of spatial association by use of distance statistics. Geographical Analysis, 1992, 24: 189-206 [32] 应奎, 李旭东. 贵阳市人口老龄化的乡镇空间格局变化研究. 贵州师范大学学报: 自然科学版, 2020, 38(5): 64-72 |