您当前所在位置: 首页 > 师资 > 全职教师 > 按姓名 > ALL > 正文

杨军

教授

办公电话:010-62787211

电子邮件: larix@tsinghua.edu.cn

研究组主页:

教育背景
09/1999-12/2004 博士,美国加利福尼亚大学伯克利分校环境科学、政策与管理系
09/1996-07/1999 硕士,北京林业大学园林学院
09/1990-07/1994 学士,北京林业大学林业资源环境学院
工作经历
固定职位
01/2019- 长聘教授,清华大学地球系统科学系
01/2013-01/2019 准聘副教授,清华大学地球系统科学系
09/2009-11/2012 教授,北京林业大学林学院
09/2005-05/2009 准聘助理教授,美国天普大学风景园林园艺系
07/1994-07/1996 研究实习员,中国医学科学院药用植物研究所
短期访问职位
09/2017-02/2018 访问副教授,美国康奈尔大学鸟类实验室
07/2008-12/2008 高级访问学者,中国科学院遥感应用研究所
01/2005-03/2005 访问博士后,耶鲁森林与环境学院Williams Burch教授实验室
研究兴趣
全球变化的背景下的
• 城市生态系统结构与功能;
• 城市生物多样性;
• 城市生态系统服务与居民健康福祉;
• 城市生态研究中遥感及大数据方法;
奖励荣誉
2011 澳大利亚领导者奖学金 澳大利亚国立大学
2001 Xi-Sigma-Pi 美国林业荣誉协会加利福尼亚分会
研究概况
职称 教授 办公电话 010-62787211
电子邮件 larix@tsinghua.edu.cn 研究组主页
教育背景 09/1999-12/2004    博士,美国加利福尼亚大学伯克利分校环境科学、政策与管理系<br>
09/1996-07/1999    硕士,北京林业大学园林学院<br>
09/1990-07/1994    学士,北京林业大学林业资源环境学院<br>
工作经历 固定职位<br>
01/2019-           长聘教授,清华大学地球系统科学系<br>
01/2013-01/2019    准聘副教授,清华大学地球系统科学系<br>
09/2009-11/2012    教授,北京林业大学林学院<br>
09/2005-05/2009    准聘助理教授,美国天普大学风景园林园艺系<br>
07/1994-07/1996    研究实习员,中国医学科学院药用植物研究所<br>
短期访问职位<br>
09/2017-02/2018    访问副教授,美国康奈尔大学鸟类实验室<br>
07/2008-12/2008    高级访问学者,中国科学院遥感应用研究所<br>
01/2005-03/2005    访问博士后,耶鲁森林与环境学院Williams Burch教授实验室
研究兴趣 全球变化的背景下的<br>
• 城市生态系统结构与功能;<br>
• 城市生物多样性;<br>
• 城市生态系统服务与居民健康福祉;<br>
• 城市生态研究中遥感及大数据方法;<br>
奖励荣誉 2011 澳大利亚领导者奖学金 澳大利亚国立大学<br>
2001 Xi-Sigma-Pi 美国林业荣誉协会加利福尼亚分会<br>

学术论文:(*代表通讯作者,#代表指导的研究生)

2021

[1]Yang, J*., Xing, D., Luo, X. 2021. Assessing the performance of a citizen science project for monitoring urban woody plant species diversity in China. Urban Forestry & Urban Greening, 59: 127001.

[2]Goddard, M., Davies, Z., …Yang, J…et al. 2021.A global horizon scan of the future impacts of robotics and autonomous systems on urban ecosystems.Nature Ecology & Evolution, 5: 219-230.

[3]Yang, J*., Zhang, Y., Xiao, Y., Shen, S., Su, M., Gong, P. 2021. Using Internet Search Queries to Assess Public Awareness of the Healthy Cities Approach: A Case Study in Shenzhen, China.International Journal of Environmental Research and Public Health,18: 4264.

[4]Luo, X#., Jiang, P., Yang, J., Jin, J., Yang, J*. 2021. Simulating PM2. 5 removal in an urban ecosystem based on the social-ecological model framework. Ecosystem Services, 47: 101234.

[5]Gao, B#., Gong, P., Zhang, W.,Yang, J., Si, Y*. Multiscale effects of habitat and surrounding matrices on waterbird diversity in the Yangtze River Floodplain.Landscape Ecology,36: 179-190.

[6]Yang, J#.,Yang, J*., Xing, D., Luo, X., Lu, S., Huang, C., Hahs, A. 2021. Impacts of the remnant sizes, forest types and landscape patterns of surrounding areas on woody plant diversity of urban remnant forest patches.Urban Ecosystems,24: 345-354.

2020

[7]Yang, J*. Big data and the future of urban ecology: From the concept to results.Science China Earth Sciences, 63: 1443-1456.

[8]Yang, J*., Luo, X., Xiao, Y., Shen, S. Su, M., Gong, P*. 2020. Comparing the Use of Spatially Explicit Indicators and Conventional Indicators in the Evaluation of Healthy Cities: A Case Study in Shenzhen, China.International Journal of Environmental Research and Public Health. 17, 7409.

[9]Yang, J*., Zhou, J., Jin, J., Sun, Q*. 2020. The stakeholders’ views on planting trees to control schistosomiasis in China.International Journal of Environmental Research and Public Health, 17: 939.

[10]Xing, D#.,Yang, J*., Jin, J., Luo, X. 2020. The potential of plant identification apps in urban forestry studies in China: comparison of recognition accuracy and user experience of five apps.Journal of Forestry Research,https://doi.org/10.1007/s11676-020-01234-3

[11]Jin, J#.,Yang, J*. 2020. Effects of sampling approaches on quantifying urban forest structure.Landscape and Urban Planning, 195: 103722.

[12]杨军*.大数据和城市生态学的未来:从概念到结果.中国科学 地球科学, 50, 1339-1353.

[13]Jin, J#.,Yang, J*. 2020. BDcleaner: A workflow for cleaning taxonomic and geographic errors in occurrence data archived in biodiversity databases.Global Ecology and Conservation, 21: e00852.

[14]Li, X., Gong, P*., Zhou, Y*…Yang, J…Zhu, Z. Mapping global urban boundaries from the global artificial impervious area (GAIA) data.Environmental Research Letter, 15, 094044.

[15]Gong, P. …Yang, J… et al. 2020. Annual maps of global artificial impervious area (GAIA) between 1985 and 2018.Remote Sensing of Environment, 236, 111510.

[16]Gong, P…Yang, J…et al. 2020. Mapping essential urban land use categories in China (EULUC-China): preliminary results for 2018.Science Bulletin,65: 182-187.

2019

[17]Yang, J#., Yang, J*, et al. 2019. Impacts by expansion of human settlements on nature reserves in China.Journal of Environmental Management, 248: 10933

[18]聂冲#,杨军*,黄从红. 2019.北京城区地表水体对城市热环境的调节作用分析.应用基础与工程科学学报.27: 1258-1268.

[19]Yao, N. …Yang, J...et al. 2019. Beijing’s 50 million new urban trees: strategic governance for large-scale urban afforestation. Urban Forestry & Urban Greening, 44: 126932

[20]Lv, Zhiyuan,Yang, J... et al. 2019. Prioritizing green spaces for biodiversity conservation in Beijing Based on Habitat Network Connectivity,Sustainability, 11

[21]Gong, P…Yang, J…. et al. 2019. Stable classification with limited sample: transferring a 30 m resolution sample set collected in 2015 to mapping 10 m resolution global land cover in 2017.Science Bulletin, 64: 370-373.

[22]Frazier, …Yang, J…. et al. 2019. Ecological civilization: perspectives from landscape ecology and landscape sustainability science.Landscape Ecology, 34: 1-8.

2018

[23]Yang, J, et al [Tsinghua-Lancet Commission]. 2018. Tsinghua-Lancet Commission on Healthy Cities in China: unlocking the power of cities for a healthy China.TheLancet, 391: 2140-2184.

[24]Huang, C#.Yang, J*. Jiang, P. 2018. Assessing impacts of urban form on landscape structure of urban green spaces in China using Landsat images based on Google Earth Engine.Remote Sensing, 10: 1569

[25]La Sorte, F*, …Yang, J. 2018. The phylogenetic and functional diversity of regional breeding bird assemblages is reduced and constricted through urbanization.Diversity and Distributions, 24: 928-938.

[26]Yan, P#.,Yang, J*. 2018. Performances of urban tree species under disturbances in China.Forests, 9: 50.

[27]Dai, G#.,Yang, J*., Lu, S., Huang, C., Jin, J., Jiang, P., Yan, P. 2018. The potential impact of invasive woody oil plants on protected areas in China under future climate conditions.Scientific Report, 8: 1041.

[28]Jiang, P#.,Yang, J*., Huang, C., Liu, H. 2018. The contribution of socioeconomic factors to PM2.5pollution in urban China.Environmental Pollution, 233: 977-985.

[29]Luo, J., …Yang, J…et al. 2018. Variation in plant functional groups indicates land degradation on the Tibetan Plateau.Scientific Report. 8: 17606.

2017

[30]Huang, C#.,Yang, J*., Lu, H., Huang, H., Yu, L. 2017. Green spaces as an indicator of urban health: evaluating its changes in 28 mega-cities.Remote Sensing, 9: 1266.

[31]Yan, P#.,Yang, J*. 2017. Species diversity of urban forests in China.Urban Forestry & Urban Greening, 28: 160-166.

[32]Yang, J*., Yan, P., He, R., S, X. 2017. Exploring land-use legacy effects on taxonomic and functional diversity of woody plants in a rapidly urbanizing landscape.Landscape and Urban Planning, 162: 92-103.

[33]Dai, G#.,Yang, J*., Huang, C., Sun, C., Jia, L., Ma, L. 2017. The effects of climate change on the development of tree plantations for biodiesel production in China.Forests, 8: 207.

[34]Li, C., [and 20 others, includingYang, J.]. 2017. The first all-season sample set for mapping global land cover with Landsat-8 data.Science Bulletin, 62: 508-515.

[35]Huang, H., Chen, Y., Clinton, N., Wang, J., Wang, X., Liu, C., Gong, P.,Yang, J., Bai, Y., Zheng, Y., Zhu, Z. 2017 Mapping major land cover dynamics in Beijing using all Landsat images in Google Earth Engine.Remote Sensing of Environment, 129: 189-199.

[36]Song, Q., Lu, H., Liu, J.,Yang, J., Yang, G., Yang, Q. 2017. Accessing the impacts of bamboo expansion on NPP and N cycle in evergreen broadleaved forest in subtropical China.Scientific Reports, 7: 40383.

[37]Yang, J., Wu, T., Gong, P*. 2017. Implementation of China’s new urbanization strategy requires new thinking.Science Bulletin, 62: 81-82.

2016

[38]Yang, J*., Yan, P., Li, X. 2016. Urban biodiversity in China: Who are winners? Who are losers?Science Bulletin, 61: 1631-1633.

[39]Nie C#.,Yang, J*., Huang, C. 2016. Assessing the habitat quality of aquatic environments in urban Beijing.Procedia Environmental Sciences, 36: 162-168.

[40]Watts, N, et al [The Lancet Commission on Health and Climate Change, includingYang, J.].2016. The Lancet countdown: tracking progress on health and climate change.The Lancet, 369: 1151-1164.

[41]Xu, B.,Yang, J., Zhang, Y., Gong, P.* 2016. Healthy cities in China: a Lancet commission.The Lancet, 388: 1863-1864.

[42]Li, X., Yu, L., Xu, Y.,Yang, J., Gong, P*. 2016. Ten years after Hurricane Katrina: monitoring recovery in New Orleans and the surrounding areas using remote sensing,Science Bulletin, 61: 1460-1470.

[43]He, R#.,Yang, J*., Song, X. 2016. Quantifying the impact of different ways to delimit study areas on the assessment of species diversity of an urban forest,Forests, 7: 42.

[44]Hu, T.,Yang, J*., Li, X., Gong, P. 2016. Mapping urban land uses by using Landsat images and point of interest data.Remote sensing, 8: 151.

[45]Li, M., Li, C., Jiang, H., Fang, C.,Yang, J., Zhu, Z., Shi, L., Liu, S., Gong, P*. 2016. Tracking bamboo dynamics in Zhejiang, China, using time-series of Landsat data from 1990-2014.International Journal of Remote Sensing, 37: 1714-1729.

[46]Wang, X., Huang, H., Gong, P*., Biging, G., Xin, Q., Chen, Y.,Yang, J., Liu, C. 2016. Quantifying multi-decadal change of planted forest cover using airborne LiDAR and landsat imagery,Remote Sensing, 8: 62.

[47]郭凤#,陈建刚,杨军*,孟莹莹,龚应安2016.SWMM模拟植草沟功能的参数敏感性分析.中国给水排水, 32: 131-134.

[48]Zhang, W#., Ma, L.,Yang, J*. 2016. Analysis of the use of ecosystem service concept in forest-based tourism overseas.World Forestry Research, 29: 7-13. (In Chinese, English Abstract)

[49]梁顺林等19名作者,包括杨军. 2016.全球气候数据集生成及气候变化应用研究.遥感学报, 20: 1491-1499.

2015

[50]Yang, J*., La Sorte, F.A., Pysek, P, Yan, P., Nowak, D, McBride, J. 2015. The compositional similarity of urban forests among the world’s cities is scale dependent.Global Ecology and Biogeography, 24: 1413-1423.

[51]Watts, N*, et al [The Lancet Commission on Health and Climate Change, includingYang, J]. 2015. Health and climate change: policy responses to protect public health.The Lancet, 386: 1861-1914. (I am the co-leading author of the section 3)

[52]Watts, N*, et al [The Lancet Commission on Health and Climate Change, includingYang, J]. 2015. Health and climate change- Political strategies for the protection of public health.Umweltmedizin in Forschung und Praxis, 20: 167-169.

[53]Zhang, W#.,Yang, J*., Ma, L., Huang, C. 2015. Factors affecting the use of urban green spaces for physical activities: Views of young urban residents in Beijing.Urban Forestry & Urban Greening, 14: 851-857.

[54]Yang, J*., Dai, G., Wang, S. 2015. China’s national monitoring program on ecological functions of forests: An analysis of the protocol and initial results.Forests, 6: 809-826.

[55]Yang, J*., Chang, Y., Yan, P. 2015. Ranking the suitability of common urban tree species for controlling PM2.5 pollution.Atmospheric Pollution Research, 6: 267-277.

[56]杨军*. 2015.寻找城市病的正确绿色药方.上海绿化和市容, 81: 63-65.(非审稿杂志)

[57]李素莉#,杨军*,马履一,贾黎明,李荣恒,秦永胜. 2015.北京市交通干道防护林带内PM2.5浓度变化特征,西北林学院学报30: 245-252.

[58]郭凤#,陈建刚,杨军*,孟莹莹,龚应安. 2015.植草沟对北京市道路地表径流的调控效应.水土保持通报, 35: 176-181.

[59]姚娜,马履一,杨军,贾黎明,段颉,黄从红. 2015.北京市平原地区1992-2013年生态空间演变.生态学杂志, 34: 1427-1434.

[60]常亚敏#,闫蓬勃,杨军*. 2015.北京地区控制PM2.5污染的城市绿化树种选择建议.中国园林, (1): 69-73.

2014

[61]Yang, J*., Huang, C., Zhang, Z., Wang, L. 2014. The temporal trend of urban green coverage in major Chinese cities between 1990 and 2010.Urban Forestry & Urban Greening, 1: 19-27.

[62]Zhang, W#.,Yang, J*. 2014. Development of outdoor recreation in Beijing, China between 1990 and 2010.Cities, 37: 57-65.

[63]Li, C., Wang, J., Hu, L., Yu, L., Clinton, N., Huang, H.,Yang, J., Gong, P*. 2014. A circa 2010 thirty meter resolution forest map for China.Remote Sensing, 6: 5325-5343

[64]张志永#,叶兵*,杨军,何奇江,董建华. 2014.城市森林保健功能研究进展.世界林业研究, 27: 27-33.

[65]张志永#,叶兵*,杨军,陈勤娟,何奇江,董建华. 2014.杭州市城市森林生态保健功能动态变化监测.西北林学院学报, 29: 31-36.

[66]黄从红#,杨军*,张文娟. 2014.森林资源二类调查数据在生态系统服务评估模型InVEST中的应用.林业资源管理, (5): 126-131.

[67]姚娜,马履一*,杨军,贾黎明,段颉. 2014. 3S技术在城市林业中的应用.世界林业研究, 27: 23-28.

2013

[68]Yang, J., Gong, P*., Fu, R., Zhang, M., Chen, J., Liang, S., Xu, B., Shi, J., Dickson, R. 2013. The role of satellite remote sensing in climate change studies.Nature Climate Change, 3: 875-883.

[69]Yang, J*., Dai, G., Ma, L., Jia, L., Wu, J. 2013. Forest-based bioenergy in China: Status, opportunities, and challenges.Renewable and Sustainable Energy Reviews, 18: 478-485.

[70]Wang, L*, Silvan-Cardenas, J.L.,Yang, J., Frazier, A.E. 2013. Invasive saltcedar (Tamarisk spp.) distribution mapping using multiresolution remote sensing imagery.The Professional Geographer, 65: 1-15.

[71]张艳丽,夺智勇,杨军,胡译文,张志永,叶兵. 2013.杭州城市绿地群落结构与植物多样性.东北林业大学学报, 41: 25-30.

[72]黄从红#,杨军*,张文娟. 2013.生态系统服务功能评估模型研究进展.生态学杂志, 32: 3360-3367.

[73]刘诗琦,贾黎明*,杨军,辛建华. 2013.基于Landsat TM数据估算山东菏泽区域杨树人工林碳储量.北京林业大学学报, 35: 36-41.

[74]张志永#,杨军*,李珣,张文娟,黄从红. 2013.城市森林生态效益评价工作现状分析-基于对城市林业主管部门的调查.北京林业大学学报(社会科学版), 12: 36-40.

[75]赵娟#,杨军*,赖娜娜,袁承江,唐硕,张志永. 2013.古侧柏林土壤和植物营养元素含量与树势相关性研究.中国农学通报, 29: 9-13.

[76]鲍风宇#,秦永胜,李荣恒,周金星,杨军*. 2013.北京市5种典型城市绿化植物的生态保健功能分析.中国农学通报, 29: 26-35.

2012

[77]Yang, J*., Zhou, J., Ke, Y., Xiao, J. 2012. Assessing the structure and stability of street trees in Lhasa,Urban Forestry & Urban Greening, 11: 423-438.

[78]Niu, Z., [and 30 others, includingYang, J.]. 2012. Mapping wetland changes in China between 1978 and 2008.China Science Bulletin, 57: 2813-2823.

[79]Yang, J*. 2012. Urban Forestry in challenging environments.Urban Forestry & Urban Greening, 11: 103-104.

[80]黄从红#,张志永,张文娟,杨军*. 2012.国外森林地上部分碳汇遥感监测方法综述.世界林业研究, 25:20-26.

[81]张志永#,杨军*. 2012.中国古典山水园林中植物配置的历史演变.现代园林, 6: 8-11

[82]胡译文#,杨军*. 2012.城市森林保健功能研究进展.中国城市林业. 10: 18-20.

[83]胡译文#,马履一*,杨军,陈名杰,王宁,郭红喜. 2012.时空交融 异质同构——论中国古典园林与音乐的构筑艺术和文化审美关系.北京园林. (4):30-33

[84]杨军,张明祥,雷光春. 2012.《中国国家级湿地自然保护区保护成效初步评估》中的偏差.科学通报, 57:1367-1370.

2011

[85]Zhou, J*., Wei, Y.,Yang, J., et al. 2011. Carbon budget and its response to environmental factors in young and mature poplar plantations along the middle and lower reaches of the Yangtze River, China.Journal of Food, Agriculture & Environment, 9: 818-825.

[86]Li, G., Liu, Y*., Zhu Y.,Yang, J., Sun, H., Jia, Z., Ma, Lu. 2011. Influence of initial age and size on the field performance ofLarix olgensisseedlings.New Forests, 42: 215-226.

[87]胡译文#,秦永胜,李荣恒,周金星,鲍风宇,杨军*. 2011.北京市三种典型城市绿地类型的保健功能分析.生态环境学报, 20: 1872-1878.

[88]张文娟#,赵娟,黄华兵,赖娜娜,唐硕,杨军*. 2011.基于地基激光雷达数据的单株古树稳定性研究.西南林学院学报. 31: 36-39.

[89]赖娜娜,袁承江,唐硕,杨军,赵娟,张文娟,赵长琦*. 2011.应用探地雷达探测古树根系分布.东北林业大学学报, 39: 124-126.

[90]杨静怡,杨军,马履一*,贾忠奎. 2011.中国城市绿化评价系统比较分析.城市环境与生态, 24: 13-16.

2010

[91]Yang, J*., Gong, P., Zhou, J., Huang H., Wang L. 2010. Detection of the urban heat island in Beijing using HJ-1B satellite imagery.Science China-Earth Sciences, 53(suppl.1): 67-73.

2009

[92]Yang, J*. 2009. Assessing the potential impact of climate change on urban trees: a case study in Philadelphia.Journal of Forestry, 107: 364-372.

[93]Yang, J*., Zhao, L. S and McBride, J. 2009.Can you see green? Assessing the visibility of urban forests in cities.Landscape and Urban Planning, 91: 97-104.

2008

[94]Yang, C.,Yang, J*., Lou, X., Peng, G. 2008. The use of mobile phones in an emergency reporting system for infectious disease surveillance after the Sichuan earthquake in China.WHO Bulletin, 87: 619-623.

[95]Yang, J*., Yu, Q., Peng, G. 2008. Quantifying air pollution removal by green roofs in Chicago,Atmospheric Environment, 42: 7266-7273.

[96]Zhou, J.,Yang, J*., Peng, G. 2008.Constructing a green railway on the Tibet Plateau: Evaluating the effectiveness of mitigation measures.Transportation Research Part D: Transport and Environment, 13: 369-376.

[97]Yu, Q., Gong, P*., Tian, Y.Q., Pu, R.,Yang, J. 2008. Factors affecting spatial variation of classification uncertainty in an image object-based vegetation mapping,Photogrammetric Engineering & Remote Sensing. 74: 1007-1008.

[98]周金星*,杨军,董林水,张旭东,左力. 2008.青藏铁路唐古拉山南段沿线植被多样性及盖度特征分析.北京林业大学学报, 30: 24-30.

2007

[99]Yang, J*., Zhou, J. 2007. The failure and success of greenbelt program in Beijing.Urban Forestry & Urban Greening, 6: 287-296.

[100]Yang, J*and Myers, M. 2007. Study of stormwater runoff reduction by greening vacant lots in North Philadelphia. In Proceeding of 2007 Pennsylvania Stormwater Management Symposium, October 17-18. Philadelphia, Pennsylvania.(会议论文)

2005

[101]Yang, J*., McBride, J., Zhou, J., Sun, Z. 2005. The urban forest in Beijing and its role in air pollution reduction.Urban Forestry & Urban Greening, 3: 65-78.

2004

[102]Yang, J*., McBride, J. 2004. A unique technique for street tree planting in Beijing.Arboricultural Journal, 27: 1-10.

[103]校建明,马履一*,王小平,徐晋涛,杨军. 2004.密云集水区森林树木固C经济效益研究.北京林大学报, 26: 20-24.

2003

[104]吴泽民*, McBride, J., Nowak, D.,杨军, Cheng, S. 2003.合肥城市森林减少大气污染的效果.中国城市林业, 1: 39-43

1998

[105]程惠珍*,陈君,杨军. 1998.应用昆虫病原线虫防治构祀负泥虫的研究(Lema decempuntataScopoli).中草药, 29: 121-123.

出版著作:

[106]Yang, J*., Huang, C. 2019. Quantity, accessibility, and stability of urban green spaces in China’s megacities. InUrban Landscapes in High-density cities. Eds. Rinaldi, B.M. and Tan, P.Y. Birkhauser, Basel, Switzerland. pp 180-188.

[107]杨军*. 2017.第28章 特征参量获取与处理关键技术,《全球变化遥感产品的生产与应用》,科学出版社

[108]罗勇等16名作者,含杨军. 2017。第三章 不同温升控制目标下全球气候变化对中国的影响研究.《中国碳排放尽早达峰》,中国经济出版社

[109]江泽慧等24名作者,含杨军. 2014.《青藏铁路沿线植被生态恢复》,中国林业出版社

[110]杨军*. 2012.第7节 碳汇林.《森林培育》第三版,中国林业出版社

[111]杨军*. 2012.《城市林业:规划与管理》,中国林业出版社

[112]Yang, J*., Zhou, J. 2009. Comparison of vegetation cover in Beijing and Shanghai: A remote sensing approach. InComparative Ecology of Cities and Towns, eds. McDonnell M. J., Amy, H., Breuste, J. Cambridge University Press. UK

[113]Yang, J*., Zhou, J., Gong, P. 2008. Determining spatial and temporal changes in green-space distribution in Beijing using remote sensing. InEcology and Management of Urban Forests: An International Perspective, eds. Margaret, M. C., Song, Y. C., and Wu, J. G. Springler-Verlag, USA.

[114]程惠珍*.,杨军. 1998.药用真菌病虫害.《中国药用真菌》,北京医科大学出版社