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    题名 作者 年代 出处 被引量
1Balance and mobility per formance as treatable risk factors for recurrent falling in older per sons显示文摘Vianda SS Jan HS Saskia MF 2003J Clin Epidemi2003,56,:1
2Influence of recycling on mass transfer and reaction in a GL jet loop reactor with variable interfacial area显示文摘Hans-Joachim Warnecke Jan Prüss Günter Tamm 1993Chemical Engineering and Technology1993,16,1:1
3Glutathione and signal transduction in the mammalian CNS显示文摘Janáky R Ogita K Pasqualotto BA Bains JS Oja SS Yoneda Y Shaw CA 0,,03:1
4Balance and mobility performance as treatable risk factors for recurrent falling in old- er persons 显示文摘Vianda SS Jan HS Saskia MF 2003J Clin Epidemiol2003,56,7:1
5Mutations of KRT6A are more frequent than those of KRT16 in pachyonychia congenita type 1: report of a novel and a recently reported mutation in two unrelated Chinese families显示文摘Bai ZL Feng YG Jan SS 2008Br J Dermatol2008,159,1:1
6$ L^p $-Theory of the Stokes equation in a half space显示文摘Wolfgang Desch Matthias Hieber Jan Prüss 2001Journal of Evolution Equations2001,,1:1
7Right ventricular infundibular β-adrenoceptor complex in tetralogy of Fallot fatients显示文摘Lena SS Fang D Jan MQ 1997Pediatric Reserch1997,42,1:1
8N‐methyl‐ D ‐aspartate receptor antibodies in herpes simplex encephalitis显示文摘Harald Prüss Carsten Finke Markus H?ltje Joerg Hofmann Christine Klingbeil Christian Probst Kathrin Borowski Gudrun Ahnert‐Hilger Lutz Harms Jan M. Schwab Christoph J. Ploner Lars Komorowski Winfried Stoecker Josep Dalmau Klaus‐Peter Wandinger 2012Ann Neurol2012,,6:1
9A Population Balance Model for Disperse Systems:Particle Size Distribution in Suspension Polymerization显示文摘On the basis of population balance a mathematical model is developed to describe the formation of polymer partlcle in styrene suspension polymerization. The characteristics of coalescence and breakage of droplets and the gel effect are analyzed in particular. Parameters of the models are esthnztted by experimental. on reaction conversion and particle size distributlon. The results show that the model is suitable for predicting polymerization processes.陈中 Werner Pauer H.-U.Moritz Jan Prss Hans-Joachim Warnecke 1999Chinese Journal of Chemical Engineering1999,7,4:1
10Overview of recent land cover changes,forest harvest areas,and soil erosion trends in Nordic countries显示文摘Mapping spatiotemporal land cover changes offers opportunities to better understand trends and drivers of envi-ronmental change and helps to identify more sustainable land management strategies.This study investigates the spatiotemporal patterns of changes in land covers,forest harvest areas and soil erosion rates in Nordic countries,namely Norway,Sweden,Finland,and Denmark.This region is highly sensitive to environmental changes,as it is experiencing high levels of human pressure and among the highest rates of global warming.An analysis that uses consistent land cover dataset to quantify and compares the recent spatiotemporal changes in land cover in the Nordic countries is missing.The recent products issued by the European Space Agency and the Copernicus Climate Change Service framework provide the possibility to investigate the historical land cover changes from 1992 to 2018 at 300 m resolution.These maps are then integrated with time series of forest harvest areas be-tween 2004 and 2018 to study if and how forest management is represented in land cover products,and with soil erosion data to explore status and recent trends in agricultural land.Land cover changes typically involved from 4%to 9%of the total area in each country.Wetland showed the strongest reduction(11,003 km^(2),−11%of the wetland area in 1992),followed by forest(8,607 km^(2),−1%)and sparse vegetation(5,695 km^(2),−7%),while agriculture(15,884 km^(2),16%)and settlement(3,582 km^(2),84%)showed net increases.Wetland shrinkage dominated land cover changes in Norway(5,870 km^(2),−18%),followed by forest and grassland with a net gain of 3,441 km^(2)(3%)and 3,435 km^(2)(10%),respectively.In Sweden,forest areas decreased 13,008 km^(2)(−4%),mainly due to agriculture expansion(9,211 km^(2),29%).In Finland,agricultural areas increased by 5,982 km^(2)(24%),and wetland decreased by 6,698 km^(2)(−22%).Settlement had the largest net growth in Denmark(717 km^(2),70%),mainly from conversion of agriculture land.Soil erosion rates in Nordic countries are lower than the global average,but they are exacerbating in several locations(especially western Norway).The integration of the land cover datasets with maps of forest harvest areas shows that the majority of the losses in forest cover due to forestry operations are largely undetected,but a non-negligible share of the forest-to-agriculture(up to 19%)or forest-to-grassland(up to 51%)transitions overlap with the harvested sites.Forestry activity in the study region primarily involves small-scale harvest events that are difficult to be detected at the 300 m resolution of the land cover dataset.An accurate representation of forest management remains a challenge for global datasets of land cover time series,and more interdisciplinary international efforts are needed to address this gap.Overall,this analysis provides a detailed overview of recent changes in land cover and forest management in Nordic countries as represented by state-of-the-art global datasets,and offers insights to future studies aiming to improve these data or apply them in land surface models,climate models,landscape ecology,or other applications.Na Zhou Xiangping Hu Ingvild Byskov Jan Sandstad Næss Qiaosheng Wu Wenwu Zhao Francesco Cherubini 2021Geography and Sustainability2021,2,3:0
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