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19篇 您的检索式:作者名="Kleppel"
    题名 作者 年代 出处 被引量
1The fate of the carotenoid pigment fucoxanthin during passage through thecopepod gut:pigment recovery as a function of copepod species,season and food concentration显示文摘Kleppel G S 1998J Plankton Res1998,20,:1
2Distribution of tubulointerstitial nephritis antigen and evidence for multiple forms 显示文摘Butkowski RJ Kleppel MM Katz A 1991Kidney Int1991,40,:1
3Trophic interactions between copepods and microplankton: A question about the role of diatoms显示文摘Kleppel G S Holliday D V Pieper R E 1991Limnology and Oceanology1991,36,:1
4Trophic interac- tions between copepods and microplankton: a question a- bout the role of diatoms 显示文摘Kleppel G S Holliday D V Pieper R E 1991Limnol Oeeanogr1991,36,1:1
5A nutrient biotic index ( NBI ) for use with benthic maeroinvertebrate communities 显示文摘SMITH A J BODE R W KLEPPEL G S 2007Ecologieal Indicators2007,7,:1
6A nutrient biotic index(NBI)foruse with benthic macroinvertebrate communities显示文摘SMITH A J BODE R W KLEPPEL G S 2007Ecological Indicators2007,7,:1
7Human tissue distribution of novel basement membrane collagen显示文摘KLEPPEL M M SANTI P A 1989Am J Pathol1989,134,4:1
8Trophic interactions between copepods and microplankton: a question about the role of diatoms显示文摘Kleppel G S Holliday D V Pieper R E 1991Limnology Oceanography1991,36,1:1
9Egg production and the nutritional environment of Aurelia aurita:the role of food quality in copepod nutrition显示文摘Kleppel G S Burkart C A 1995ICES J Mar Sci1995,52,:1
10Egg production of the copepod acartia tonsa in Florida Bay:role of fatty acids in the nutritional composition of the food environment 显示文摘Hazzard S E Kleppel G S 2003Mar Ecol Prog Ser2003,252,:1
11Carotenoid-pigments in microzooplankton显示文摘Kleppel G S Lessard E J 1992Marine Ecology-Progress Series1992,84,3:1
12Autoimmune pancrea- titis: the clinicopathological characteristics of the subtype with granulocytic epithelial lesions显示文摘Kleppel G Detlefsen S Chari S T 2010J Gastroenterol2010,45,8:1
13Human tissue distribution of novel basement membrane collagen显示文摘 Santi PA Cameron JD 1989Am J Pathol1989,134,:1
14Land-use proximity as a basis for assessing stream water quality in New York State (USA)显示文摘Christopher P. Tran Robert W. Bode Alexander J. Smith Gary S. Kleppel 2009Ecological Indicators2009,,3:1
15Basement mem- brane collagen in the kidney: regional localization of novel chains related to collagen IV 显示文摘Butkowski RJ Wieslander J Kleppel M 1989Kidney Int1989,35,5:1
16Egg production of the copepod acartia tonsa in Florida Bay: role of fatty acids in the nutritional composition of the food environment显示文摘Hazzard S E Kleppel G S 2003Mar Ecol Prog Ser2003,252,:1
17A new incubation system for the measurement of copepod egg production and egg hatching success in the field显示文摘Burkart C A Kleppel G S 1998J Exp Mar Biol Ecol1998,221,:1
18Basement mem- brane collagen in the kidney: regional localization of novel chains related to collagen IV 显示文摘Butkowski R J Wieslander J Kleppel M 1989Kidney Int1989,35,5:1
19Antibiotic bone cement's effect on infection rates in primary and revision total knee arthroplasties显示文摘AIM To compare infection rates in primary and revision total knee arthroplasty(TKA) procedures using antibiotic impregnated bone cement(AIBC) to those rates in procedures not using AIBC.METHODS A systematic review and meta-analysis was conducted in search for randomized controlled trials/studies(RCTs) pertaining to the field of antibiotic AIBC vs non-AIBC groups in both primary and revision TKA procedures. The primary literature search performed was to identify all RCTs that assessed AIBC in primary and revision TKA procedures. This search was done strictly through the Pub Med database using the article 'filters' setting that identified and separated all RCTs from the overall search. The original search was 'Primary/revision total knee arthroplasty using AIBC'. Other key terms and phrases were included in the search as well. Eligible articles that were used in the 'results' of this review met the following criteria:(1) Involved primary or revision TKA procedures(for any reason);(2) included TKA outcome infection rate information;(3) analyzed an AIBC group vs a non-AIBC control group;(4) were found through the RCT filter or hand search in Pub Med; and(5) published 1985-2017. Exclusion criteria was as follows:(1) Patients that were not undergoing primary or revision TKA procedures;(2) articles that did not separate total hip arthroplasity(THA) vs TKA results if both hip and knee revisions were evaluated;(3) papers that did not follow up on clinical outcomes of the procedure;(4) extrapolation of data was not possible given published results;(5) knee revisions not done on human patients;(6) studies that were strictly done on THAs;(7) articles that were not found through the RCT filter or through hand search in Pub Med;(8) articles that did not evaluate AIBC used in a prosthesis or a spacer during revision;(9) articles that did not compare an AIBC group vs a non-AIBC control group; and(10) articles that were published before 1985.RESULTS In total, 11 articles were deemed eligible for this analysis. Nine of the 11 studies dealt with primary TKA procedures comparing AIBC to non-AIBC treatment. The other two studies dealt with revision TKA procedures that compared such groups. From these papers, 4092 TKA procedures were found. 3903 of these were primary TKAs, while 189 were revision TKAs. Of the 3903 primary TKAs, 1979 of these used some form of AIBC while 1924 were part of a non-AIBC control group. Of the 189 revision TKAs, 96 of these used some form of AIBC while 93 were part of a non-AIBC control group. Average followup times of 47.2 mo and 62.5 mo were found in primary and revision groups respectively. A two-tailed Fisher's exact test was done to check if infection rates differed significantly between the groups. In the primary TKA group, a statistically significant difference between AIBC and non-AIBC groups was not found(AIBC infection rate = 23/1979, non-AIBC infection rate = 35/1924, P = 0.1132). In the revision TKA group, a statistically significant difference between the groups was found(AIBC infection rate = 0/96, non-AIBC infection rate = 7/93, P = 0.0062). No statistically significant differences existed in Knee Society Scores, Hospital for Special Surgery Scores, or Loosening Rates.CONCLUSION AIBC did not have a significant effect on primary TKA infection rates. AIBC did have a significant effect on revision TKA infection rates.Donald Kleppel Jacob Stirton Jiayong Liu Nabil A Ebraheim 2017World Journal of Orthopedics2017,8,12:0
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