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21篇 您的检索式:作者名="ASTRID F"
    题名 作者 年代 出处 被引量
1Storage stability of freeze-dried starter cultures(Streptococcus thermophilus)as related to physical state of freezing matrix显示文摘Astrid B A Mette S F Heidi L et a1 1999Lebensmittel-Wissenschaft und-Technologie1999,32,:1
2Comparison of the antioxidant activity of aspalathin with that of other plant phenols of rooibos tea(Aspal- athus linearis ) α-Tocopherol, BHT and BHA 显示文摘ASTRID V G ELIZABETH J CHRIS F H 1997J Agrie Food Chem1997,45,:1
3Influence of ionic strength, pH, and cation valence on aggregation kinetics of titanium dioxide nanoparticles 显示文摘Rebecca A F Astrid R J Bojeong K 2009Environment Science Technology2009,43,:1
4Implementation of a quality improvement initiative in Belgian diabetic foot clinics: feasibility and initial results显示文摘Kris Doggen Kristien Van Acker Hilde Beele Isabelle Dumont Patricia Félix Patrick Lauwers Astrid Lavens Giovanni A. Matricali Caren Randon Eric Weber Viviane Van Casteren Frank Nobels 2014Diabetes Metab Res Rev2014,,5:1
5The pronostic signifisance of proliferition cell nuclear antigen, Epidermal growth Factor Recepter and mdr gene expresesion in coloretal cancer显示文摘 Masafumi T Elke F 1993Cancer1993,71,69:1
6Anodising as pre-treatment for structural bonding显示文摘ASTRID B LAPIQUE F WALMSLEY J 2003International Journal of Adhesion and Adhesives2003,23,5:1
7Multriresidue Method Using SPME for the Determination of Various Pesticides with Different Volatility in Confined Atmospheres显示文摘FEDERICO F ASTRID S MAURICE M 2004Anal Bioanal Chem2004,379,:1
8Peroxisome Proliferator - Activated Receptor Agonist Provides Superior Renal Protection versus Angiotensin - Converting Enzyme Inhibition in a Rat Model of Type 2 Diabetes with Obesity显示文摘Chris B Elke - Astrid A Gary F 2003Pharmacol Experi Therau2003,307,:1
9No loss of cardio-protection by postconditioning in connexin 43-deficient mice显示文摘Gerd H Astrid B Sandra F 2006Basic Res Cardiol2006,101,:1
10Employee Satisfaction:Does Kano's Model Apply?显示文摘KURT M MATTHIAS F ASTRID K S 2004Total Quality Management2004,15,910:1
11Global Prevalence and Major Risk Factors of Diabetic Retinopathy显示文摘Yau Joanne W Y Rogers Sophie L Kawasaki Ryo Lamoureux Ecosse L Kowalski Jonathan W Bek Toke Chen Shih-Jen Dekker Jacqueline M Fletcher Astrid Grauslund Jakob Haffner Steven Hamman Richard F Ikram M Kamran Kayama Takamasa Klein Barbara E K K 2012EN2012,,3:1
12Human fibroblasts downregulate plasminog en activator inhibitor type-1 in cultured human macrovascular and microvascular endothelial cells显示文摘 Astrid F Ljubomir P 1996Blood1996,88,10:1
13Bovine mastitis caused by a Mycoplasma species显示文摘HAL E H H H EMBOLD T C F PL ASTRID GE W N 1962Cornell Veterinarian1962,,52:1
14Osteoprotegerin serum levels in women Correlation with age, bone mass 显示文摘ASTRID F HARALD D CLAUDIA P 2003Wien Klin Wochenschr2003,115,9:1
15耕作方式对土壤物理性状和木薯干物质分配的影响显示文摘保护性耕作可有效缓解土壤退化,但是也会影响土壤物理性质,使土壤板结,进而影响作物根系生长,因此木薯生产几乎不采用保护性耕作措施。本研究目的在于探索完整木薯生长周期内,不同耕作方式对木薯干物质分配(Dry material partitioning,DMP)变化的影响。本文对木薯种植后70 d、120 d、230 d、350 d,少耕(Minimum tillage,MT)、传统耕作(Conventional tillage,CT)、不耕(No-tillage,NT)3种耕作方式对土壤水分含量、土壤穿透阻力、大孔隙度、小孔隙度、总孔隙度的影响进行研究;同时,每30 d测定木薯植株中的干物质含量,直到360 d收获结束。结果表明,耕作方式对土壤穿透阻力、大孔隙度、小孔隙度和总孔隙度,以及木薯叶片、茎秆、根系和残留种茎中的干物质含量均有影响。种植后150~210 d之间,干物质分配变化显著,这正好对应了块茎膨大期后期和休眠期早期。不耕(NT)处理下作物的茎秆和残留种茎干物质含量最大。地上部分干物质与土壤穿透阻力呈正相关。传统耕作(CT)和少耕(MT)对块茎产量的影响没有差异,因此,考虑到耕作对土壤流失有一定的促进作用,少耕(MT)应当取代传统耕作(CT)。不耕(NT)处理提高了土壤的穿透阻力,阻碍了根系的生长,进而引起了木薯茎秆和残留种茎中的干物质积累明显高于根系中的干物质积累,使得茎秆和残留种茎表现出一定的碳水化合物储藏器官特性。Priscila Gonzales Figueiredo Silvio JoséBicudo Songbi Chen Adalton Mazetti Fernandes F bio Yomei Tanamati Astride Stéphanie Mouafi Djabou-Fondjo 杨雅婷 2020中国农机化学报2020,41,11:1
16Chronic angiotensin II receptor blockade reduces (intra) renal vascular resistance in patients with type 2 diabetes 显示文摘Danilo F Kathrin-Kristin W Astrid L 2005J Am Soc Nephro12005,16,4:1
17Cognitive factors predicting intentions to search for health information: An application of the theory of planned behaviour 显示文摘Astrid A D Ragnhild S F S:lvi H 2012Health Information & Libraries Journal2012,29,4:1
18GATA6 promotes angio- genic function and survivalin endothelial cells by suppres- sion of autocrine transforming growthfactor/activin recep- tor-like kinase 5 signaling显示文摘Natali F Badder K Astrid Br eta/ 2011J Biol Chem2011,286,7:1
19Discounting of delayed rewards:A life-span comparison显示文摘Leonard G Astrid F F Joel M 0,,01:1
20Polyelectrolyte-coated unilamellar nanometer-sized magnetic liposomes 显示文摘JOANA F P ANJA R ASTRID K 2009Langmuir2009,25,12:1
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