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19篇 您的检索式:作者名="Scarabel"
    题名 作者 年代 出处 被引量
1Mammalian and yeast 14-3-3 isoforms form distinct patterns of dimers in vivo显示文摘Chaudhri M Scarabel M Aitken A 0,,03:1
2Mammalian and yeast 14-3-3 isoforms form distinct patterns of dimers in vivo显示文摘Chaudhri M Scarabel M Aitken A 2003Biochem Biophys Res Commun2003,300,3:1
3Phosphorylation-dependent interactions between enzymes of plant metabolism and 14-3-3 proteins显示文摘Moorhead G Douglas P Corelle V Harhill J Morrice N Meek S Deiting U Stitt M Scarabel M Aitken A MacKintosh C 0,,:1
4Syn- cope due to nasopharyngeal carcinoma显示文摘Chen Scarabelli C Kaza A R Scarabel|i T 2005Lancet Oncol2005,6,5:1
5Mammalian and yeast 14-3 -3 isoforms form distinct patterns of dimers in vivo 显示文摘Chaudhri M Scarabel M Aitken A 2003Biochemical and Biophysical Research Communications2003,300,:1
6European Biotype of Amaranthus Retroflexus Cross-resistant to ALS Inhibitors and Response to Alternative Herbicides显示文摘Scarabel L Varotto S Sattin M A 2007Weed Research2007,47,:1
7Maxincal cytoreductive surgery as a reasonable therapeutical ternative for recurrent endometri- al carcinoma显示文摘Scarabell C Campagnutta E Giorda G 1998Gynecol Onco11998,70,1:1
8Mammalian and yeast 14- 3-3 isoforms form distinct patterns of dimers in vivo显示文摘Chaudhri M Scarabel M Aitken A 2003Biochemical and Biophysical Research Communications2003,300,3:1
9Mammalian and yeast 14 -3 -3 isoforms form distinct patterns of dimmers in vivo显示文摘Chaudhri M Scarabel M Aitken A 2003Bio- ehem Biophys Res Commun2003,300,3:1
10Mammalian and yeast 14-3-3 isoforms form distinct patterns of dimers in vivo 显示文摘Chaudhri M Scarabel M Aitken A 2003Biochem Biophys Res Commun2003,300,3:1
11Mammalian and yeast 14-3-3 isoforms form distinct patterns of dimers in vivo显示文摘Chaudhri M Scarabel M Aitken A 2003Biochem Biophys Res Commun2003,300,3:1
12Mammalian and yeast 14-3-3 isoforms form distinct patterns of dimers in vivo显示文摘Chaudhri M Scarabel M Aitken A 2003Biochem Biophys Res Commun2003,300,3:1
13Characterisation and management of Phalaris paradoxa resistant to ACCase-inhibitors显示文摘A. Collavo S. Panozzo G. Lucchesi L. Scarabel M. Sattin 2010Crop Protection2010,,3:1
14Alielic variation of the AC- Case gene and response to ACCase- inhibiting herbicides in pinoxaden-re- sistant Lolium spp显示文摘SCARABEL L PANOZZO S VAROT- TO S 2011Pest Manag Sci2011,67,:1
15Phosphorylation-dependent interactions between enzymes of plant metabolism and 14-3-3 proteins显示文摘Moorhead G Douglas P Cotelle V Harthill J Morrice N Meek S Deiting U Stitt M Scarabel M Aitken A MacKintosh C 1999Plant Journal1999,18,:1
16Mammalian and yeast 14-3-3 isoforms form distinct patterns of dimers in vivo显示文摘Chaudhri M Scarabel M Aitken A 2003Biochemical and Biophysical Research Communications2003,300,3:1
17Mammalian and yeast 14-3-3 isoforms form distinct patterns of dimers in vivo显示文摘Chaudhri M Scarabel M and Aitken A 2003Biochem Biophys Res Commun2003,300,:1
18Mammalian and yeast 14-3-3 isoforms form distinct patterns of dimers in vivo 显示文摘Chaudhri M Scarabel M Aitken A 2003Biochemical and Biophysical Research Com-munications2003,300,3:1
19Canada needs to rapidly escalate public health interventions for its COVID-19 mitigation strategies显示文摘Background:After the declaration of COVID-19 pandemic on March 11th,2020,local transmission chains starting in different countries including Canada are forcing governments to take decisions on public health interventions to mitigate the spread of the epidemic.Methods:We conduct data-driven and model-free estimations for the growth rates of the COVID-19 epidemics in Italy and Canada,by fitting an exponential curve to the daily reported cases.We use these estimates to predict epidemic trends in Canada under different scenarios of public health interventions.Results:In Italy,the initial growth rate(0.22)has reduced to 0.1 two weeks after the lockdown of the country on March 8th,2020.This corresponds to an increase of the doubling time from about 3.15 to almost 7 days.In comparison,the growth rate in Canada has increased from 0.13 between March 1st and 13th,to 0.25 between March 13th to 22nd.This current growth rate corresponds to a doubling time of 2.7 days,and therefore,unless further public health interventions are escalated in Canada,we project 15,000 cases by March 31st.However,the case number may be reduced to 4000 if escalated public health interventions could instantly reduce the growth rate to 0.1,the same level achieved in Italy.Interpretation:Prompt and farsighted interventions are critical to counteract the very rapid initial growth of the COVID-19 epidemic in Canada.Mitigation plans must take into account the delayed effect of interventions by up to 2-weeks and the short doubling time of 3e4 days.Francesca Scarabel Lorenzo Pellis Nicola Luigi Bragazzi Jianhong Wu 2020Infectious Disease Modelling2020,5,1:0
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