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17篇 您的检索式:作者名="Jelmer"
    题名 作者 年代 出处 被引量
1Nanogels:A novel approach in antimicrobial delivery systems and antimicrobial coatings显示文摘The implementation of nanotechnology to develop efficient antimicrobial systems has a significant impact on the prospects of the biomedical field.Nanogels are soft polymeric particles with an internally cross-linked structure,which behave as hydrogels and can be reversibly hydrated/dehydrated(swollen/shrunken)by the dispersing solvent and external stimuli.Their excellent properties,such as biocompatibility,colloidal stability,high water content,desirable mechanical properties,tunable chemical functionalities,and interior gel-like network for the incorporation of biomolecules,make them fascinating in the field of biological/biomedical applications.In this review,various approaches will be discussed and compared to the newly developed nanogel technology in terms of efficiency and applicability for determining their potential role in combating infections in the biomedical area including implant-associated infections.Damla Keskin Guangyue Zu Abigail M.Forson Lisa Tromp Jelmer Sjollema Patrick van Rijn 2021Bioactive Materials2021,6,10:4
2Preeclampsia is Associ- ated with lower Percentages of Regulatory T Cells in Maternal Blood 显示文摘Prins Jelmer R Boelens Hendrik M 2009Hypertension in Pregnancy2009,28,3:1
3Persistence of a bioluminescent Staphylococcus aureus strain on and around degradable and non-degradable surgical meshes in a murine model显示文摘Seyedmojtaba Daghighi Jelmer Sjollema Valery Jaspers Leonie de Boer Sebastian A.J. Zaat Rene J.B. Dijkstra Gooitzen M. van Dam Henny C. van der Mei Henk J. Busscher 2012Acta Biomaterialia2012,,11:1
4The potential for bio-optical imaging of biomaterial-associated infection in vivo显示文摘Jelmer Sjollema Prashant K. Sharma Rene J.B. Dijkstra Gooitzen M. van Dam Henny C. van der Mei Anton F. Engelsman Henk J. Busscher 2009Biomaterials2009,,8:1
5Parametric Bayesian filters for nonlinear stochastic dynamical systems:A survey显示文摘Pawe S Zsofia L Jelmer B 2013IEEE Trans on Cybernetics2013,43,6:1
6Stroop and picture-word interference are two sides of the same coin显示文摘Maanen Leendert Van Rijn Hedderik Van Borst Jelmer P 2009Psychonomic Bulletin & Review2009,,6:1
7Big Data Analytics for Earth Sciences:the EarthServer approach显示文摘Big Data Analytics is an emerging field since massive storage and computing capabilities have been made available by advanced e-infrastructures.Earth and Environmental sciences are likely to benefit from Big Data Analytics techniques supporting the processing of the large number of Earth Observation datasets currently acquired and generated through observations and simulations.However,Earth Science data and applications present specificities in terms of relevance of the geospatial information,wide heterogeneity of data models and formats,and complexity of processing.Therefore,Big Earth Data Analytics requires specifically tailored techniques and tools.The EarthServer Big Earth Data Analytics engine offers a solution for coverage-type datasets,built around a high performance array database technology,and the adoption and enhancement of standards for service interaction(OGC WCS and WCPS).The EarthServer solution,led by the collection of requirements from scientific communities and international initiatives,provides a holistic approach that ranges from query languages and scalability up to mobile access and visualization.The result is demonstrated and validated through the development of lighthouse applications in the Marine,Geology,Atmospheric,Planetary and Cryospheric science domains.Peter Baumann Paolo Mazzetti Joachim Ungar Roberto Barbera Damiano Barboni Alan Beccati Lorenzo Bigagli Enrico Boldrini Riccardo Bruno Antonio Calanducci Piero Campalani Oliver Clements Alex Dumitrua,Mike Grant Pasquale Herzig George Kakaletris John Laxton Panagiota Koltsida Kinga Lipskoch Alireza Rezaei Mahdiraji Simone Mantovani Vlad Merticariu Antonio Messina Dimitar Misev Stefano Natali Stefano Nativi Jelmer Oosthoek Marco Pappalardo James Passmore Angelo Pio Rossi Francesco Rundo Marcus Sen Vittorio Sorbera Don Sullivan Mario Torrisi Leonardo Trovato Maria Grazia Veratelli Sebastian Wagner 2016International Journal of Digital Earth2016,9,1:1
8Artificial night lighting rather than traffic noise affects the daily timing of dawn and dusk singing in common European songbirds 显示文摘ARNAUD D S JELMER M S EMMI S 2014Behavioral Ecology2014,25,5:1
9The fractal geometry of tidal-channel systems in the Dutch Wadden Sea显示文摘Jelmer Cleveringa Albert P. Oost 1999Geologie en Mijnbouw1999,,1:1
10The interplay of glutathione-related processes in antioxidant defense显示文摘Nicole H.P Cnubben Ivonne M.C.M Rietjens Heleen Wortelboer Jelmer van Zanden Peter J van Bladeren 2001Environmental Toxicology and Pharmacology2001,,4:1
11Anaerobic digestion of spent bedding from deep litter piggery housing 显示文摘Stephan T Jelmer T Bruce E 2009Biore- source technology2009,100,7:1
12Waste to resource:converting paper mill wastewater to bioplastic显示文摘Yang Jianga Leonie Maranga Jelmer Tamis 2012Water Research2012,46,:1
13Parametric Bayesian filters for nonlinear stochastic dynamical systems:a survey显示文摘PAWE S ZSOFIA L JELMER B 2013IEEE Trans on Cybernetics2013,43,6:1
14Poor clinical sensitivity of rapid antigen test for influenza A pandemic (H1N1) 2009 virus 显示文摘Drexler JF Jelmer A Kirberg H 2009Emerg Infect Dis2009,15,10:1
15Regulatory T-cells and immune tolerance in pregnancy: a new target for infertility treatment显示文摘Leigh R Guerin Jelmer R 2009Hum Reprod Update2009,15,:1
16海藻酸微球及骨架片中苯基偶氮苯的释放特性(英文)显示文摘目的 :研究海藻酸微球及由海藻酸微球、果胶、HPMC组成的骨架片中苯基偶氮苯的释放特性。方法 :海藻酸微球通过喷雾 凝聚法制得 ,苯基偶氮苯 (PAA)作为疏水性模型药物通过吸附法被微球载运。制备了由海藻酸微球、果胶、HPMC组成的骨架片。测定了海藻酸微球及骨架片中苯基偶氮苯的释放。为进一步探讨药物释放机制 ,进行了骨架片的溶胀实验。结果 :微球中PAA的释放依赖于释放介质 ,其中在水中释放不完全 ,在人工胃肠液中呈延缓到肠内释放的特性。在骨架片中也观察在人工胃肠液中的延缓释放行为。果胶酶有一定的加速骨架片释放的的作用。释放度和溶胀实验数据均证明骨架片为溶胀控制。结论涂家生 Sam Bolla John Barr Jelmer Miedema Xiaoling Li Bhaskara Jiasti 2003中国药科大学学报2003,34,6:0
17亚甲蓝海藻酸微球的研究(英文)显示文摘报道了一种适合于放大规模的制备多孔隙的海藻酸微球的方法—喷雾 凝聚法。当 5 % (w/v)海藻酸钠溶液通过3/ 8”的喷枪在 4 0~ 6 0 psi气压下喷雾到 1mol/L氯化钙溶液中可以形成空隙率最大的微球。亚甲蓝被选作水溶性阳离子模型药物。亚甲蓝的载药方法是吸附法。亚甲蓝的释放度结果表明载药微球在去离子水中释药不完全 ,在氯化钠溶液中由于钠离子和钙离子的交换使微球崩解而迅速释放药物。结果表明涂家生 Sam Bolla John Barr Jelmer Miedema Xiaoling Li Bhaskara Jiasti 2004药物生物技术2004,11,6:0
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