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| 1 | A MULTISCALE SOIL LOSS EVALUATION INDEX显示文摘Exploring the relationships between land use and soil erosion at different scales is a fron-tier research field and a hot spot topic in contempo-rary physical geography. Based on the scale-pattern-process theory in landscape ecology and with consideration of such influential factors as land use, topography, soil and rainfall, this paper ap-plies the scale transition method to establishing a soil loss evaluation index at different scales and puts forward a research path and methodology for mul-tiscale soil loss evaluation indices. The multiscale soil loss evaluation index is applied to the evaluation of relationships between land use and soil erosion and the research of soil erosion evaluation at multiple scales. It provides a new method for optimizing the design of regional land use patterns and integrated multiscale research. | FU Bojie ZHAO Wenwu CHEN Liding Lü Yihe WANG De | 2006 | Chinese Science Bulletin2006,51,4: | 22 |
| 2 | Remote Sensing of Ecosystem Services:An Opportunity for Spatially Explicit Assessment显示文摘Ecosystem service is an emerging concept that grows to be a hot research area in ecology.Spatially explicit ecosystem service values are important for ecosystem service management.However,it is difficult to quantify ecosystem services.Remote sensing provides images covering Earth surface,which by nature are spatially explicit.Thus,remote sensing can be useful for quantitative assessment of ecosystem services.This paper reviews spatially explicit ecosystem service studies conducted in ecology and remote sensing in order to find out how remote sensing can be used for ecosystem service assessment.Several important areas considered include land cover,biodiversity,and carbon,water and soil related ecosystem services.We found that remote sensing can be used for ecosystem service assessment in three different ways:direct monitoring,indirect monitoring,and combined use with ecosystem models.Some plant and water related ecosystem services can be directly monitored by remote sensing.Most commonly,remote sensing can provide surrogate information on plant and soil characteristics in an ecosystem.For ecosystem process related ecosystem services,remote sensing can help measure spatially explicit parameters.We conclude that acquiring good in-situ measurements and selecting appropriate remote sensor data in terms of resolution are critical for accurate assessment of ecosystem services. | FENG Xiaoming FU Bojie YANG Xiaojun Lü Yihe | 2010 | Chinese Geographical Science2010,20,6: | 18 |
| 3 | Linking vegetation cover patterns to hydrological responses using two process-based pattern indices at the plot scale显示文摘Vegetation cover pattern is one of the factors controlling hydrological processes.Spatially distributed models are the primary tools previously applied to document the effect of vegetation cover patterns on runoff and soil erosion.Models provide precise estimations of runoff and sediment yields for a given vegetation cover pattern.However,difficulties in parameterization and the problematic explanation of the causes of runoff and sedimentation rates variation weaken prediction capability of these models.Landscape pattern analysis employing pattern indices based on runoff and soil erosion mechanism provides new tools for finding a solution.In this study,the vegetation cover pattern was linked with runoff and soil erosion by two previously developed pattern indices,which were modified in this study,the Directional Leakiness Index(DLI)and Flowlength.Although they use different formats,both indices involve connectivity of sources areas(interpatch bare areas).The indices were revised by bringing in the functional heterogeneity of the plant cover types and the landscape position.Using both artificial and field verified vegetation cover maps,observed runoff and sediment production on experiment plots,we tested the indices’efficiency and compared the indices with their antecedents.The results illustrate that the modified indices are more effective in indicating runoff at the plot/hillslope scale than their antecedents.However,sediment export levels are not provided by the modified indices.This can be attributed to multi-factor interaction on the hydrological process,the feedback mechanism between the hydrological function of cover patterns and threshold phenomena in hydrological processes. | LIU Yu FU BoJie Lü YiHe GAO GuangYao WANG Shuai ZHOU Ji | 2013 | Science China Earth Sciences2013,56,11: | 15 |
| 4 | A framework for the regional critical zone classi?cation: the case of the Chinese Loess Plateau显示文摘The concept of the Earth’s Critical Zone(CZ)—the near-surface heterogeneous environment of our planet—was originally defined to include the land surface,vegetation canopy, rivers, lakes and shallow seas (1)CZ accommodates interactions among air, water, soil, rock and living organisms, and determines the availability of life-sustaining resources needed for the well-being and sustainability of human society. Therefore, there are new opportunities for integrative. | Yihe Lü Jian Hu Bojie Fu Paul Harris Lianhai Wu Xiaolin Tong Yingfei Bai Alexis J.Comber Alexis J.Comber | 2019 | National Science Review2019,6,1: | 4 |
| 5 | Active infective endocarditis: Low morta-lity associated with early surgical treatment 显示文摘 | Periac M Vuk F Huskiec R Lausevi Vuk L Neskovi AN Borzanovi M Boji M | 2000 | Cardiovasc Surg2000,8,3: | 1 |
| 6 | Assessing the soilerosion control service of ecosystems change in the LoessPlateau of China显示文摘 | Fu Bojie Liu Yu LüYihe | 2011 | Ecological Complexity2011,8,4: | 1 |
| 7 | Hydrological responses and soil erosion potential of abandoned cropland in the Loess Plateau, China显示文摘 | Yu Liu Bojie Fu Yihe Lü Zhi Wang Guangyao Gao | 2011 | Geomorphology2011,,1: | 1 |
| 8 | Adapting ecosystem restoration for sustainable development in a changing world显示文摘The world population exceeded eight billion in 2022 and will continue to grow rapidly in the coming decades.To support the survival andwell-being of this large and growing population,numerous natural resources have been overexploited,and a large amount of waste has been generated,inducing forms of ecosystem degradation,such as biodiversity loss,productivity decline,and environmental pollution,which undermine the capacity of sustainable development for socioecological systems at multiple scales.As a countermeasure for this problem,a land-degradation-neutral world by 2030 has been established as a critical component of the Sustainable Development Goals. | Xing Wu Yihe Lü Junze Zhang Nan Lu Wei Jiang Bojie Fu | 2023 | The Innovation2023,4,1: | 1 |
| 9 | Effects of Vegetation Restoration on Soli Organic Carbon Sequestration at Multi- ple Scales in Semi-arid Loess Plateau, China 显示文摘 | Yafeng W Bojie F Yihe L 2011 | 2011 | Catena2011,85,1: | 1 |
| 10 | Afect of botulinum toxin-A injection on intraocular pressure and proptosis in thyroid associated orbitopathy 显示文摘 | Lesin M Boji 6 L Romae R | 2009 | Coil Antropol2009,33,4: | 1 |
| 11 | Some funda- mental issues in Scaling显示文摘 | Zhao W W Bojie F Cheng L D | 2002 | Advance in Earth Sciences2002,17,6: | 1 |
| 12 | A framework for evaluating the effectiveness of protected areas: the case of Wolong Biosphere Reserve显示文摘 | Yihe L ti Liding Chen Bojie Fu | 2003 | Landscape and Urban Planning2003,63,2003: | 1 |
| 13 | Effects of vegetation restoration on soil organic carbon sequestration at multiple scales in semi-arid Loess Plateau,China显示文摘 | Wang Yafeng Fu Bojie LüYihe | 2011 | Catena2011,85,1: | 1 |
| 14 | Hypertensive retinopathy and preeclampsia显示文摘 | Tadin I Boji L Mimica M | 2001 | Coll Antropol2001,,: | 1 |
| 15 | When multi-functional landscape meets Critical Zone science:advancing multi-disciplinary research for sustainable human well-being显示文摘Environmental degradation has become one of the major obstacles to sustainable development and human well-being internationally. Scientific efforts are being made to understand the mechanism of environmental degradation and sustainability. Critical Zone(CZ) science and research on the multi-functional landscape are emerging fields in Earth science that can contribute to such scientific efforts. This paper reviews the progress, similarities and current status of these two scientific research fields, and identifies a number of opportunities for their synergistic integration through functional and multi-functional approaches,process-based monitoring, mechanistic analyses and dynamic modeling, global long-term and networked monitoring and systematic modeling supported by scaling and deep coupling. These approaches proposed in this paper have the potential to support sustainable human well-being by strengthening a functional orientation that consolidates multi-functional landscape research and CZ science. This is a key challenge for sustainable development and human well-being in the twenty-first century. | Ying Luo Yihe Lü Bojie Fu Paul Harris Lianhai Wu Alexis Comber | 2019 | National Science Review2019,6,2: | 0 |