[1] 贾恒锋, 牟玉梅, 旦增罗布, 等. 西藏尼木县古树年龄鉴定及生长历史分析[J]. 应用生态学报, 2018, 29(7): 2401 − 2410.

JIA Hengfeng, MOU Yumei, DANZENG Luobu, et al. Age investigation and growth history analysis of old trees in Nyemo County of Tibet, China [J]. Chin J Appl Ecol, 2018, 29(7): 2401 − 2410.
[2] 米锋, 李吉跃, 张大红, 等. 北京地区林木损失额的价值计量研究: 有关古树名木科学文化价值损失额计量方法的探讨[J]. 北京林业大学学报, 2006, 28(增刊 2): 141 − 148.

MI Feng, LI Jiyue, ZHANG Dahong, et al. The quantitative estimation of forest tree loss in Beijing: discuss on the computation method of measuring the loss of antique and rare tress, scientific culture value [J]. J Beijing For Univ, 2006, 28(suppl 2): 141 − 148.
[3] 邢福武. 中国的珍稀植物 [M]. 长沙: 湖南教育出版社, 2005: 54 − 55.
[4] FRITTS H C. Tree Rings and Climate[M]. Caldwell: The Blackburn Press, 2001: 132 − 139.
[5] 孟宪宇. 测树学 [M]. 2版. 北京: 中国林业出版社, 1996.
[6] 吴祥定. 树木年轮与气候变化 [M]. 北京: 气象出版社, 1990.
[7] 王懿祥, 戴文圣, 白尚斌, 等. 古树名木调查方法的改进[J]. 浙江林学院学报, 2006, 23(5): 549 − 553.

WANG Yixiang, DAI Wensheng, BAI Shangbin, et al. Improved survey method of ancient and famous trees [J]. J Zhejiang For Coll, 2006, 23(5): 549 − 553.
[8] 谢丽宏, 黄钰辉, 温小莹, 等. 广东省新丰江水库古树资源特征与分布格局[J]. 林业与环境科学, 2017, 33(4): 34 − 38.

XIE Lihong, HUANG Yuhui, WEN Xiaoying, et al. Resource characteristics and distribution patten of ancient trees in Xinfengjiang reservoir, Guangdong Province [J]. For Environ Sci, 2017, 33(4): 34 − 38.
[9] 卢紫君, 刘锡辉, 涂慧萍. 广州市中心城区古树名木的资源现状与开发利用[J]. 林业与环境科学, 2017, 33(1): 77 − 80.

LU Zijun, LIU Xihui, TU Huiping. The resources and utilization of ancient and famous trees in central districts of Guangzhou City [J]. For Environ Sci, 2017, 33(1): 77 − 80.
[10] LIAO Hongying, REN Mingxun. Distribution patterns of long-lived individuals of relict plants around Fanjingshan Mountain in China: implications for in situ conservation[J]. Collectanea Botanica, 2015, 34: e002. doi: 10.3989/collectbot.2015.v34.002.
[11] 国家林业局. 古树名木普查技术规范: Y/2738−2016 [S]. 北京: 中国标准出版社, 2016.
[12] 周婷, 牛安逸, 马姣娇, 等. 国家湿地公园时空格局特征[J]. 自然资源学报, 2019, 34(1): 26 − 39.

ZHOU Ting, NIU Anyi, MA Jiaojiao, et al. Spatio-temporal pattern of national wetland parks [J]. J Nut Resour, 2019, 34(1): 26 − 39.
[13] 蒋金亮, 徐建刚, 吴文佳, 等. 中国人-地碳源汇系统空间格局演变及其特征分析[J]. 自然资源学报, 2014, 29(5): 757 − 768.

JIANG Jinliang, XU Jiangang, WU Wenjia, et al. Patterns and dynamics of China’s Human-nature carbon source-sink system [J]. J Nut Resour, 2014, 29(5): 757 − 768.
[14] 赵璐, 赵作权. 基于特征椭圆的中国经济空间分异研究[J]. 地理科学, 2014, 34(8): 979 − 986.

ZHAO Lu, ZHAO Zuoquan. Projecting the spatial variation of economic based on the specific ellipses in China [J]. Sci Geogr Sin, 2014, 34(8): 979 − 986.
[15] FISCHER M M, GETIS A. Handbook of Applied Spatial Analysis[M]. Berlin: Springer-Verlag Berlin Heidelberg, 2010: 27-149.
[16] FORTHCOMING A S, CARLTON M, BRONSON C. The geography of parameter space: an investigation of spatial non-stationarity [J]. Geogr Inf Syst, 1996, 10(5): 605 − 627.
[17] ANSELIN L. The local indicators of spatial association: LISA [J]. Geogr Anal, 1995, 27(2): 93 − 115.
[18] 李记, 徐爱俊. 古树名木旅游最优路线设计与实现[J]. 浙江农林大学学报, 2018, 35(1): 153 − 160.

LI Ji, XU Aijun. Design and implementation of the optimal tourist route of ancient trees [J]. J Zhejiang A&F Univ, 2018, 35(1): 153 − 160.
[19] 江振蓝, 杨玉盛, 沙晋明. GWR模型在土壤重金属高光谱预测中的应用[J]. 地理学报, 2017, 72(3): 533 − 544.

JIANG Zhenlan, YANG Yusheng, SHA Jinming. Application of GWR model in hyperspectral prediction of soil heavy metals [J]. Acta Geogr Sin, 2017, 72(3): 533 − 544.
[20] BRUNSDON C, FOTHERINGHAM S, CHARLTON M. Geographically weighted regression-modelling spatial non-stationarity [J]. J Royal Stat Soc, 1998, 47(3): 431 − 443.
[21] 杨晴青, 刘倩, 尹莎, 等. 秦巴山区乡村交通环境脆弱性及影响因素: 以陕西省洛南县为例[J]. 地理学报, 2019, 74(6): 1236 − 1251.

YANG Qingqing, LIU Qian, YIN Sha, et al. Vulnerability and influencing factors of rural transportation environment in Qinling-Daba mountainous areas: a case study of Luonan county in Shaanxi Province [J]. Acta Geogr Sin, 2019, 74(6): 1236 − 1251.