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26篇 您的检索式:作者名="Kummu"
    题名 作者 年代 出处 被引量
1湄公河流量变化对洞里萨地区洪水脉动的影响显示文摘湄公河上游以大型水电大坝和水库建设、大型灌溉计划及快速的城镇发展为形式的迅猛开发正将水资源置于压力之下。近来的研究得出的结论是,这些开发将导致湄公河流量的变化。这些流量变化通过改变这个湖泊的洪水脉动系统会威胁到敏感的河流下游,尤其是洞里萨河、洞里萨湖、其泛滥平原、其河道长廊林及保护区。本文估计了由于前面述及的流量变化而导致的洞里萨地区洪水脉动参数的变化。利用地理信息系统方法分析了对洪泛区的影响,以及长廊林和保护区损失。旱季湖泊水位相对较小的上升,会永久淹没大得不成比例的泛滥平原面积,使得泛滥平原的植被不能达到这里,并损害生态系统的生产力基础。为保护洞里萨湖的生态系统生产力,保持湄公河的天然水文格局,尤其是保持旱季水位是十分重要的。Matti Kummu Juha Sarkkula 寒江(译) 2008AMBIO-人类环境杂志2008,37,3:3
2Lost food, wasted resources: Global food supply chain losses and their impacts on freshwater, cropland, and fertiliser use显示文摘M. Kummu H. de Moel M. Porkka S. Siebert O. Varis P.J. Ward 2012Science of the Total Environment2012,,:2
3Immunization with malondialdehyde-modified low-density lipoprotein (LDL) reduces atherosclerosis in LDL receptor-deficient mice challenged with porphyromonas gingivalis显示文摘Turunen SP Kummu O Horkko S 2014Innate Immun2014,17,1:1
4Sediment- related impacts due to upstream res- ervoir trapping, the lower Mekong River 显示文摘Kummu M Varis O 2007Geomorphology2007,,85:1
5Sediment-related impacts due to upstream reservoir trapping, the Lower Mekong River显示文摘KUMMU M VARIS O 2007Geomorphology2007,85,:1
6Sediment-related impacts due to upstream reservoir trapping,the Lower Mekong River 显示文摘KUMMU M VARIS O 2007Geomorphology2007,85,:1
7Sediment load estimates and variations in the Lower Mekong River显示文摘WANG J J LU X X KUMMU M 2011River Research and Applications2011,27,1:1
8Specific recognition of malondialdehyde and malondialdehyde acetaldehyde adducts onoxidized LDL and apoptotic cells by complement anaphylatoxin C3a 显示文摘Veneskoski M Turunen SP Kummu O 2011Free Radic Biol Med2011,51,4:1
9Sediment-related impacts due to upstream reservoir trapping,the Lower Mekong River显示文摘KUMMU M VARIS O 2007Geomorphology2007,85,:1
10The Major Central Asian River Basins: An Assessment of Vulnerability 显示文摘Varis O Kummu M 2012International Journal of Water Resources Development2012,28,3:1
11Diet change-a solution to reduce water use?显示文摘Jalava M Kummu M Porkka M 2014Environmental Research Letters2014,9,07:1
12Water Management in Angkor: Human Impacts on Hydrology and Sediment Transportation显示文摘Matti Kummu 2009Journal of En- vironmental Management2009,,90:1
13Water management in Angkor: Human impacts on hydrology and sediment transportation显示文摘Matti Kummu 2008Journal of Environmental Management2008,,3:1
14Lost food, wastedresources : Global food supply chain losses and their impacts onfreshwater, cropland, and fertiliser use显示文摘Kummu M de Moel H Porkka M 2012Science of the TotalEnvironment2012,438,3:1
15Sediment-related impacts due to upstream reservoir trapping, the Lower Mekong River显示文摘Kummu M Varis O 2007Geomorphology2007,85,34:1
16Riverbank ehanges along the Mekong River : Remote sensing detection in the Vientiane-None Khai area 显示文摘Kummu M Lu X X Rasphone A 2008Quaternary International2008,186,1:1
17ABCG2/BCRP decreases the transfer of a food-born chemical carcinogen, 2-amino-l-methyl- 6 phenylimidazopyridine ( PhIP ) in perfused term human placenta显示文摘Myllynen P Kummu M Kangas T 2008Toxicol Appl Pharmacol2008,232,:1
18A global dataset of the extent of irrigated land from 1900 to 2005 显示文摘Siebert S Kummu M Porkka M 2014Hydrology and Earth System Sciences Discussions2014,11,13:1
19Speci c recognition of malondialdehyde and malondialdehyde acetaldehyde adducts on oxi- dized LDL and apoptotic cells by complement anaphylatoxin C3a 显示文摘MARJA V TURNNEN S P KUMMU O 2011Free Rad Biol & Med2011,51,4:1
20ABCG2/BCRP decreases the transfer of a food-born chemical carcinogen, 2-amino-1-methyl-6-phenylimidazo{4,5-b} pyridine (PhIP) in perfused term human placenta 显示文摘Myllynen P Kummu M Kangas T 2008Toxicol Appl Pharmacol2008,232,:1
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