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10篇 您的检索式:作者名="Kenneth E Peters"
    题名 作者 年代 出处 被引量
1Early generation character istics of a sulfur-rich monterey kerogen显示文摘Davi k Baskin Kenneth E Peters 1992AAPG1992,76,1:1
2Gadolinium delayed enhancement cardiovascular magnetic resonance correlates with clinical measures of myocardial infarction显示文摘W.Patricia Ingkanisorn Kenneth L Rhoads Anthony H Aletras Peter Kellman Andrew E Arai 2004Journal of the American College of Cardiology2004,,12:1
3Effects of alteplase beyond 3 h after stroke in the Echoplanar Imaging Thrombolytic Evaluation Trial (EPITHET): a placebo-controlled randomised trial显示文摘Stephen M Davis Geoffrey A Donnan Mark W Parsons Christopher Levi Kenneth S Butcher Andre Peeters P Alan Barber Christopher Bladin Deidre A De Silva Graham Byrnes Jonathan B Chalk John N Fink Thomas E Kimber David Schultz Peter J Hand Judith Frayne Graeme 2008Lancet Neurology2008,,4:1
4Peptic Ulcer disease显示文摘Peter Malfertheiner Francis K L Chan Kenneth E L McColl 2009Lancet2009,374,9699:1
5A new approach for modeling slag infiltration and solidification in a continuous casting mould显示文摘PAVEL E R L PETER D L KENNETH C M 2010ISIJ International2010,50,12:1
6Modernization of Hot Strip Mill with CVC Technology and a New Roughing Mill with Automatic Width Control 显示文摘Wood G E Kenneth Humphries Peter W Arnold 1989MPT1989,12,5:1
7Targeted disruption of the α1,3-galactosytransferase gene in cloned pigs显示文摘 Todd D V Jeremy B Shu-Hung Chen Carol J P Suyapa B Jeff A M Peter M J Kenneth J M Ashley E Lamborn Jamie L Cowell-Lucero Kevin D W Alan C Irina A P David L A 2002Nat Biotechnology2002,20,3:1
8Price Competition and Slotting Allowances 显示文摘Peter Bronsteen KENNETH G ELZINGA DAVID E MILLS 2005The Antitrust Bulletin2005,50,2:1
9Price Competition and Slotting Allowances 显示文摘PETER B KENNETH G DAVID E 2005The Antitrust Bulletin2005,50,2:1
10Effects of low intensity laser irradiation phototherapy on dental pulp constructs显示文摘AIM: To investigate low intensity laser irradiation phototherapy(LILIP) on the proliferation, mineralization and degradation of dental pulp constructs.METHODS: Stem cells from human exfoliated deciduous teeth(SHED) were grown to confluence and seeded on collagen scaffolds to create dental pulp constructs. LILIP was delivered to the dental pulp constructs using an 830 nm GaA IAs laser at an output power of 20 m W. The LILIP energy density was 0.4, 0.8, 1.2, and 2.4 J/cm2. After 8 d, the cell proliferation and degradation within the dental pulp constructs were measured using histologic criteria. After 28 d, the effect of LILIP on SHED mineralization was assessed by von Kossa staining.RESULTS: SHED proliferation within the dental pulp constructs varied after exposure to the 0.4, 0.8, 1.2,and 2.4 J/cm2 LILIP energy densities(P < 0.05). The maximum proliferation of SHED in nutrient deficient media was 218% after exposure to a 1.2 J/cm2 LILIP energy density. SHED grown in nutrient deficient media after exposure to a 0.4, 0.8, and 1.2 J/cm2 LILIP energy density, proliferated by 167-218% compared to the untreated(non-LILIP) control group(P < 0.05).SHED exposed to a 0.4, 0.8, and 1.2 J/cm2 LILIP energy density, and grown in optimal nutritional conditions and proliferated by 147%-164% compared to the untreated(non-LILIP) control group(P < 0.05). The exposure of SHED to the highest LILIP energy density(2.4 J/cm2) caused a reduction of the cell proliferation of up to 73% of the untreated(non-LILIP) control(P < 0.05). The amount of mineral produced by SHED increased over time up to 28 d(P < 0.05). The 0.8 and 1.2J/cm2 LILIP energy densities were the most effective at stimulating the increased the mineralization of the SHED from 150%-700% compared to untreated(nonLILIP) control over 28 d(P < 0.05). The degradation of dental pulp constructs was affected by LILIP(P <0.05). The dental pulp constructs grown in optimal nutritional conditions exposed to a 0.8 J/cm2 or 1.2 J/cm2 LILIP energy density had 13% to 16% more degradation than the untreated(non-LILIP) control groups(P < 0.05). The other LILIP energy densities caused a 1%degradation of dental pulp constructs in optimal nutritional conditions(P > 0.05).CONCLUSION: LILIP can enhance or reduce SHED proliferation, degradation and mineralization within dental pulp constructs. LILIP could promote the healing and regeneration of dental tissues.Amr M Elnaghy Peter E Murray Paul Bradley Melissa Marchesan Kenneth N Namerow Amany E Badr Youssry M El-Hawary Farid A Badria 2013World Journal of Stomatology2013,2,1:0
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