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32篇 您的检索式:作者名="LEDO A"
    题名 作者 年代 出处 被引量
1Interferon therapy for chronic urticaria显示文摘Torrelo A Hatro A Ledo A 1995J Am cad Dermatol1995,32,4:1
2Synthesis of Ag clusters in microemulsions: A time-resolved UV-vis and fluorescence spectroscopy study 显示文摘LEDO A MARTINEZ F LOPEZ-QUINTELA M A 2007Physica B: Condensed Matter2007,398,:1
3Nitric oxide in brain: diffusion, targets and concentration dynamics in hippocampal subregions显示文摘Ledo A Frade J Barbosa R M 2004Mol Aspects Med2004,25,12:1
4New syndrome of Mixed bacterial and viral etiology in cultured turbot Scophthalmus maximus显示文摘Lupiani B Dopazo C P Ledo A 1989J Aqu Ani Health1989,1,:1
5Nitric oxide in brain:diffusion,targets and concentration dynamics in hippocampal subregions显示文摘LEDO A FRADE J BARBOSA R M 2004Mol Aspects Med2004,25,12:1
6Nitric oxide in brain:diffusion, targets and concentration dynamics in hippocampal subregions显示文摘Ledo A Frade J Barbosa RM 2004Mol Aspects Med2004,25,12:1
7New insight into opioid regulatory pathways: influence of opioid on Wntl expres- sion in zebrafish embryos 显示文摘Sanchez-Simon F Ledo A Arevalo R 2012Neuroscienee2012,200,:1
8Synthesis of Ag clusters in microemulsions:A time-resolved UV-vis and fluorescence spectroscopy study显示文摘Ledo A Martinez F Lopez-Quintela M A 2007Physica B:Condensed Matter2007,398,2:1
9Cholestasis associated with prolonged parenteral nutrition in neonates: the role of urso-deoxycholic acid 显示文摘Garzon L Ledo A Cubells E 2009Pediatr2009,70,6:1
10Nitric oxide in brain:diffusion, targets and concentration dynamics in hippocampal subregions 显示文摘Ledo A Frade J Barbosa R M 2004Molecular Aspects of Medicine2004,25,12:1
11Synthesis of Ag clusters in rnicroemulsions: A tinae-resolved UV-vis and fluorescence spectroscopy study 显示文摘Ledo A Martinez F Lopez-Quintela M A 2007Physica B: Condensed Matter2007,398,2:1
12显示文摘Ledo A Martinez F Lopez-Quintela M A 2007Physica B:Condensed Matter2007,398,2:1
13Fish viral infections in Northwest of Spain 显示文摘Ledo A Lupiani B Dopazo C P 1990Microbiol SEM1990,,6:1
14Mycophenolate mofetil during pregnancy: some words of caution 显示文摘Vento M Perez Aytes A Ledo A 2008Pediatrics2008,122,:1
15Nitric oxide in brain: diffusion, targets and concentration dynamics in hippocampal subregions 显示文摘Ledo A Frade J Barbosa RM 2004Mol Aspects Meal2004,25,12:1
16Coordination of physiologic and toxic pathways in hippocampus by nilric oxide and mitochondria 显示文摘Laranjinha J Ledo A 2007Front Biosci2007,12,:1
17WALDIM:A code for the dimensionality analysis of magnetotelluric data using the rotational invariant of the Magnetotellurics显示文摘Marti A Queralt P Ledo J 0,,:1
18Different spatial organization strategies of woody plant species in a montane cloud forest 显示文摘Ledo A Montes F Cond6s S 2012Acta Oecologica2012,38,:1
19Tropical forest canopies and their relationships with climate and disturbance: results from a global dataset of consistent field-based measurements显示文摘Background: Canopy structure, defined by leaf area index(LAI), fractional vegetation cover(FCover) and fraction of absorbed photosynthetically active radiation(f APAR), regulates a wide range of forest functions and ecosystem services. Spatially consistent field-measurements of canopy structure are however lacking, particularly for the tropics.Methods: Here, we introduce the Global LAI database: a global dataset of field-based canopy structure measurements spanning tropical forests in four continents(Africa, Asia, Australia and the Americas). We use these measurements to test for climate dependencies within and across continents, and to test for the potential of anthropogenic disturbance and forest protection to modulate those dependences.Results: Using data collected from 887 tropical forest plots, we show that maximum water deficit, defined across the most arid months of the year, is an important predictor of canopy structure, with all three canopy attributes declining significantly with increasing water deficit. Canopy attributes also increase with minimum temperature, and with the protection of forests according to both active(within protected areas) and passive measures(through topography). Once protection and continent effects are accounted for, other anthropogenic measures(e.g. human population) do not improve the model.Conclusions: We conclude that canopy structure in the tropics is primarily a consequence of forest adaptation to the maximum water deficits historically experienced within a given region. Climate change, and in particular changes in drought regimes may thus affect forest structure and function, but forest protection may offer some resilience against this effect.marion pfeifer alemu gonsamo william woodgate luis cayuela andrew r.marshall alicia ledo timothy c.e.paine rob marchant andrew burt kim calders colin courtney-mustaphi aida cuni-sanchez nicolas j.deere dereje denu jose gonzalez de tanago robin hayward alvaro lau manuel j.macía pieter i.olivier petri pellikka hamidu seki deo shirima rebecca trevithick beatrice wedeux charlotte wheeler pantaleo k.t.munishi thomas martin abdul mustari philip j.platts 2018Forest Ecosystems2018,5,1:1
20Successful treatment of metastatic retinoblastoma显示文摘Dunkel IJ A ledo A Kernan NA 0,,:1
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