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15篇 您的检索式:作者名="Rodolfo T"
    题名 作者 年代 出处 被引量
1Isolation of ursolic acid from apple peels by high speed counter-current chromatography显示文摘Rosa T Rodolfo M Eduardo N 2008Food Chemistry2008,106,:1
2Hydrodynamics of a liquid-liquid countercurrent extraction column with upflow gas agitation 显示文摘 Aguayo Andres T Alvarez Rodolfo 1986J Chem Ing Tech1986,58,1:1
3Multiscale modeling approach for production of perfume microcapsules 显示文摘RODOLFO V T LAUREANO J E AARON D B 2008Chem Eng Technol2008,31,8:1
4Yacon(Smallanthus sonchifolius)-derived fructooligosaccharides improves the immune parameters in the mouse显示文摘Grethel T Choque Delgado Rodolfo Thorn6 2012Nutrition Research2012,32,11:1
5Effect of flow field de-sign on performances of high temperature PEM fuel cells: Experimental analysis 显示文摘Rodolfo T Nicola Z 2011Interna- tional Journal of Hydrogen Energy2011,36,10:1
6Liver regeneration following partial hepatectomy is improved by enhancing the HGF/Met axis and Akt and Erk pathways after low-power laser irradiation in rats显示文摘Tiago G. Araújo Alexandre G. Oliveira Natália Tobar Mario J. Abdalla Saad Luciana R. Moreira Edmyr R. Reis Ester M. D. Nicola Gracinda L. Jorge Rodolfo R. Tártaro Ilka F. S. F. Boin Antonio R. Franchi Teixeira 2013Lasers in Medical Science2013,,6:1
7Do Liquid-Based Preparations of Urinary Cytology Perform Differently Than Classically Prepared Cases? Observations From the College of American Pathologists Interlaboratory Comparison Program in Nongynecologic Cytology显示文摘Laucirica Rodolfo Bentz Joel S Souers Rhona J Wasserman Patricia G Crothers Barbara A Clayton Amy C Henry Michael R Chmara Beth Anne Clary Karen M Fraig Mostafa M Moriarty Ann T 2010Archives of Pathology & Laboratory Medicine2010,,1:1
8Controllability of heat exchanger networks显示文摘Rodolfo T William Y S Brent R Y 2006Heat Transfer Engineering2006,27,6:1
9Optimal fuzzy control system using the cross-entropy method:a case study of a drilling process显示文摘Rodolfo E H Raúl M T Agust(i)n G 2010Information Sciences2010,180,14:1
10Fatigue cracking of polypropylene fiber reinforced concrete显示文摘KAMAL T JAMSHID A RODOLFO R 1999ACI Materials Journal1999,96,2:1
11Risk factors for vascular dementia:Hypotension as a key point显示文摘Rita M Paola T Rodolfo MA 2008Vascular Health and Risk Management2008,4,2:1
12Quantifying the pH 'vital effect' in the temperate zooxanthellate coral Cladocora caespotosa : validation of the boron seawater pH proxy显示文摘TROTTER J A MONTAGNA P MCCULLOCH M T SILENZI S REYNAUD S MORTIMER G MARTIN S FERRIER Pages C GATTUSO J P RODOLFO Metalpa R 2011Earth and Planetary Science Letters2011,303,:1
13Acetyl-l-carnitine up-regulates expression of voltage-dependent anion channel in the rat brain显示文摘Giovanna T Rodolfo B Milena R 2006Neurochemistry International2006,48,8:1
14Crosstalk between gibberellin and abscisic acid in cereal aleurone 显示文摘David Ho T h Aurelio G C Rodolfo Z 2003J Plant Growth Regulation2003,22,:1
15Mesophyll thickness and sclerophylly among Calotropis procera morphotypes reveal water-saved adaptation to environments显示文摘Calotropis procera(Aiton)Dryand(Apocynaceae)is a native species in tropical and subtropical Africa and Asia.However,due to its fast growing and drought-tolerant,it has become an invasive species when it was introduced into Central and South America,as well as the Caribbean Islands.Currently,C.procera displays a wide distribution in the world.Invasiveness is important,in particular,because many invasive species exert a high reproductive pressure on the invaded communities or are highly productive in their new distributed areas.It has been suggested that a very deep root system and a high capacity to reduce stomatal conductance during water shortage could allow this species to maintain the water status required for a normal function.However,the true mechanism behind the successful distribution of C.procera across wet and dry environments is still unknown.C.procera leaves were collected from 12 natural populations in Brazil,Colombia and Mexico,ranging from wet to dry environments during 2014–2015.Many traits of morphology and anatomy from these distinct morphotypes were evaluated.We found that C.procera leaves had a considerable capacity to adjust their morphological,anatomical and physiological traits to different environments.The magnitude of acclimation responses,i.e.,plasticity,had been hypothesized to reflect the specialized adaptation of plant species to a particular environment.However,allometric models for leaf area(LA)estimation cannot be grouped as a single model.Leaves are narrower and thicker with low amounts of air spaces inside the leaf parenchyma in wet environments,while they are broader and thinner with a small number of palisade cell layers in dry environments.Based on these,we argue that broader and thinner leaves of C.procera dissipate incident energy at the expense of a higher rate of transpiration to survive in environments in which water is the most limiting factor and to compete in favorable wet environments.Marcelo F POMPELLI Keila R MENDES Marcio V RAMOS Jose N B SANTOS Diaa T A YOUSSEF Jaqueline D PEREIRA Laurício ENDRES Alfredo JARMA-OROZCO Rodolfo SOLANO-GOMES Betty JARMA-ARROYO Andre L J SILVA Marcos A SANTOS Werner C ANTUNES 2019Journal of Arid Land2019,11,6:0
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