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14篇 您的检索式:作者名="Cornelus"
    题名 作者 年代 出处 被引量
1Complex coacervation of proteins and anionic polysaccharides 显示文摘Cornelus G de Kruif Fanny Weinbreak Renko de Vries 2004Current Opinion in Colloid and Interface Science2004,,9:1
2Complex coacervation of proteins and anionic polysaccharides显示文摘Cornelus G. de Kruif Fanny Weinbreck Renko de Vries 2004Current Opinion in Colloid & Interface Science2004,,:1
3Effect of parathyroidectory in patients with hyperparathyroidism,Zollinger-Ellison syndrome,and multiple endocrine neoplasia type Ⅰ:a prospective study显示文摘Norton JA Cornelus MJ Doppman JL 1987Surgery1987,102,6:1
4Kinetics and mechanism of the oxidation of sulfur(IV) by ozone in aqueous solutions显示文摘Cornelus F B Julius H Jacobus J P 1994Atmospheric Environment1994,28,20:1
5Thermosensitive and biodegradable polymeric mi celles for paclitaxel delivery显示文摘Osamu Soga Marcel Fens Cornelus F van Nostrum 2005J Control Release2005,103,:1
6Decationized crosslinked polyplexes for redox-triggered gene delivery显示文摘Luís Novo Ethlinn V.B. van Gaal Enrico Mastrobattista Cornelus F. van Nostrum Wim E. Hennink 2013Journal of Controlled Release2013,,3:1
7Complex coacervation of proteins and anionic polysaccharides显示文摘Cornelus G de Kruif Fanny Weinbreck Renko de Vries 2004Current Opinion in Colloid &Interface Science2004,9,5:1
8The effect of core composition in biodegradable oligomeric micelles as taxane formulations显示文摘Myrra G. Carstens Pascal H.J.L.F. de Jong Cornelus F. van Nostrum Johan Kemmink Ruud Verrijk Leo G.J. de Leede Daan J.A. Crommelin Wim E. Hennink 2007European Journal of Pharmaceutics and Biopharmaceutics2007,,3:1
9SJIH15031900000042显示文摘Luí s Novo Enrico Mastrobattista Cornelus F van Nostrum Twan Lammers Wim E Hennink 2015Expert Opinion on Drug Delivery2015,,4:1
10Cyclodextrin-based polymeric materials:synthesis, properties,and pharmaceutieal/biomedieal applications 显示文摘Frank van de Manakker Tina Vemlonden Cornelus F 2009Biomacromolecules2009,10,12:1
11Complex coacervation of proteins and anionic polysaccharides 显示文摘Cornelus G de Kruif Fanny Weinbreak Renko de Vries 2004Current Opinion in Colloid and Interface Science2004,9,:1
12In vivo biocompatibility and biodegradation of 3D-printed porous scaffolds based on a hydroxyl-functionalized poly(ε-caprolactone)显示文摘Hajar Seyednejad Debby Gawlitta Raoul V. Kuiper Alain de Bruin Cornelus F. van Nostrum Tina Vermonden Wouter J.A. Dhert Wim E. Hennink 2012Biomaterials2012,,17:1
13Aspects of Causality: A Verdict Inquiry of a Case with SSRI Use显示文摘Robertus Cornelus Brouwersl, Anthonius Joseph Maria Loonen Elisabeth Maria Carolina Groenewoud-van Nielen Tjoe Ing Oei 2014Journal of Health Science2014,2,1:0
14Bacterial volatiles elicit differential olfactory responses in insect species from the same and different trophic levels显示文摘Insect communities consist of species from several trophic levels that have to forage for suitable resources among and within larger patches of nonresources.To locate their resources,insects use diverse stimuli,including olfactory,visual,acoustic,tactile and gustatory cues.While most research has focused on cues derived from plants and other insects,there is mounting evidence that insects also respond to volatile organic compounds(VOCs)emitted by microorganisms.However,to date little is known about how the olfactory response of insects within and across different trophic levels is affected by bacterial VOCs.In this study,we used Y-tube bioassays and chemical analysis of VOCs to assess how VOCs emitted by bacteria affect the olfactory response of insects of the same and different trophic levels.Experiments were performed using two aphid species(Amphorophora idaei Börner and Myzus persicae var.nicotianae Blackman),three primary parasitoid species(Aphidius colemani Viereck,A.ervi Haliday,and A.matricariae Viereck),and two hyperparasitoid species(Asaphes suspensus Nees and Dendrocerus aphidum Rondani).Olfactory responses were evaluated for three bacterial strains(Bacillus pumilus ST18.16/133,Curtobacterium sp.ST18.16/085,and Staphylococcus saprophyticus ST18.16/160)that were isolated from the habitat of the insects.Results revealed that insects from all trophic levels responded to bacterial volatiles,but olfactory responses varied between and within trophic levels.All bacteria produced the same set of volatile compounds,but often in different relative concentrations.For 11 of these volatiles we found contrasting correlations between their concentration and the behavior of the primary parasitoids and hyperparasitoids.Furthermore,olfactometer experiments on three of these compounds confirmed the contrasting olfactory responses of primary parasitoids and hyperparasitoids.The potential of these findings for the development of novel semiochemical-based strategies to improve biological aphid control has been discussed.Francine Antoinette Cornelus van Neerbos Peter Dewitte Felix Wäckers Tom Wenseleers Hans Jacquemyn Bart Lievens 2023Insect Science2023,30,5:0
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