rmd – English Translation – Keybot Dictionary

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  www.lookban.com  
2018-09-15 ATB - RMD - Brésil Serie A
2018-09-15 ATB - RMD - Brasileirao Serie A
  fr.contactoffice.com  
RMD
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  www.cgs.ca  
For further information, please contact the Chair of the RMD, Sam Proskin, sproskin@norexice.com.
If you are a CGS Rock Mechanics member and have not received your access information from CARMA and the ISRM, please contact admin@cgs.ca
  5 Hits www.dfo-mpo.gc.ca  
Les résultats actuels indiquent que le stock est à son niveau de durabilité ou même à un niveau supérieur. Le rendement maximal durable (RMD) représente la moyenne la plus élevée de prises pouvant être capturées à même un stock dans les conditions environnementales existantes.
The estimated relative biomass trend shows a consistent increase in this stock since 2000. The current results indicate that the stock is at or above sustainability levels. Maximum sustainable yield (MSY) is the the largest average catch or yield that can continuously be taken from a stock under existing environmental conditions. BMSY is simply the biomass that produces MSY.
  2 Hits www2010.yuntech.edu.tw  
Commandez par anticipation votre édition 2018 du livre des règlements sur le transport des marchandises dangereuses (RMD) de l’IATA. Les modifications apportées à la 59 édition entreront en vigueur le 1er janvier 2018.
If your company ships dangerous goods by air, being aware of current regulations can save your company timely delays. The IATA Dangerous Goods Regulations is the only manual trusted by shippers and airlines to provide a reliable and comprehensive outline of dangerous goods regulations.
  www.azalea.co.jp  
La région française de la Bretagne a annoncé qu’elle avait formé un partenariat avec le monde scientifique et le secteur afin de soutenir l’objectif de la politique commune de la pêche de l’Union consistant à atteindre un rendement maximal durable (RMD) pour les pêches d’ici 2020 au plus tard.
The French region of Brittany announced that it has partnered with science and industry to support the EU Common Fisheries Policy objective of achieving of Maximum Sustainable Yield (MSY) for fisheries by 2020 at the latest. With a budget of EUR 2.2 million until 2019 the partnership is to reduce unwanted catches and minimise the impact of fishing gear on the marine environment. Measures include the testing of better selective gear on board commercial vessels to reduce discards. Furthermore, the partnership is to carry out research and share best practices on the survival of Norway lobsters caught in the trawl fishery. Finally, the partnership is analysing the impact of dredges on the rich Maerl beds around Brittany in order to improve management measures.
  6 Hits agritrade.cta.int  
Dans sa réponse, la Commission a souligné que, en ce qui concerne particulièrement les petits pélagiques, « tout accord devrait prendre en compte la situation réelle des stocks, la stratégie RMD et la part réelle de droits de pêche de l’UE (…) il est ainsi essentiel d’obtenir des garanties de la réduction de l’effort de pêche des autres flottes qui n’appartiennent pas à l’Union, conformément à une approche durable ».
In its response the EC underlined that, in particular concerning small pelagics, ‘Any final agreement should take into account the actual status of stocks, the MSY strategy and the current share by the EU of fishing rights … it is therefore essential to have guarantees that the fishing effort of other non-EU fleets would be reduced, in line with a sustainable approach’.
  5 Hits dfo-mpo.gc.ca  
Les résultats actuels indiquent que le stock est à son niveau de durabilité ou même à un niveau supérieur. Le rendement maximal durable (RMD) représente la moyenne la plus élevée de prises pouvant être capturées à même un stock dans les conditions environnementales existantes.
The estimated relative biomass trend shows a consistent increase in this stock since 2000. The current results indicate that the stock is at or above sustainability levels. Maximum sustainable yield (MSY) is the the largest average catch or yield that can continuously be taken from a stock under existing environmental conditions. BMSY is simply the biomass that produces MSY.
  www.pyr.ec.gc.ca  
http://www.msc-smc.ec.gc.ca/acsd/publications/RMD_msc_report/policy/policy_3_f.html)
http://www.msc-smc.ec.gc.ca/acsd/publications/RMD_msc_report/policy/policy_3_e.html)
  www.asfc-cbsa.gc.ca  
RMD Structural Remodeling System, produit #411570
RMD Structural Remodeling System, Product #411570
  32 Hits www.nissan.ca  
GT-RMD 2017 Premium
2017 GT-R® Premium
  7 Hits www.international.gc.ca  
Mesures prises par RMD et échéancier
RMD Action and Time Frame
  43 Hits www.hc-sc.gc.ca  
AC / listes et introduction du RMD
NOC/listings & SBD Introduction
  6 Hits alumni.sharjah.ac.ae  
us ​ /ɑrmd/
supraglenoid
  43 Hits hc-sc.gc.ca  
AC / listes et introduction du RMD
NOC/listings & SBD Introduction
  2 Hits www.brunarosso.com  
Système RMD de remodelage de la peau
RMD - Skin Remodeling System
  www.agr.ca  
Pour le présent travail, nous avons étudié la capacité d’un nouveau système de nanoparticules, basé sur un terpolymère d’amidon, de poly(acide méthacrylique) et de polysorbate 80, à absorber et relâcher de la doxorubicine (Dox) en fonction du pH, et nous avons évalué l’activité anticancereuse de nanoparticules chargées de Dox (Dox-NP) afin de vaincre la résistance multidrogue (RMD) des cellules humaines de cancer du sein in vitro.
This work investigated the capability of a new nanoparticulate system, based on terpolymer of starch, polymethacrylic acid and polysorbate 80, to load and release doxorubicin (Dox) as a function of pH and to evaluate the anticancer activity of Dox-loaded nanoparticles (Dox-NPs) to overcome multidrug resistance (MDR) in human breast cancer cells in vitro. The Dox-NPs were characterized by Fourier transform infrared spectroscopy (FTIR), isothermal titration calorimetry (ITC), transmission electron microscopy (TEM), and dynamic light scattering (DLS). The cellular uptake and cytotoxicity of the Dox-loaded nanoparticles were investigated using fluorescence microscopy, flow cytometry, and a 3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide) (MTT) assay. The nanoparticles were able to load up to 49.7 ± 0.3% of Dox with a high loading efficiency of 99.9 ± 0.1%, while maintaining good colloidal stability. The nanoparticles released Dox at a higher rate at acidic pH attributable to weaker Dox–polymer molecular interactions evidenced by ITC. The Dox-NPs were taken up by the cancer cells in vitro and significantly enhanced the cytotoxicity of Dox against human MDR1 cells with up to a 20-fold decrease in the IC50 values. The results suggest that the new terpolymeric nanoparticles are a promising vehicle for the controlled delivery of Dox for treatment of drug resistant breast cancer.
  www.listeriosis-listeriose.investigation-enquete.gc.ca  
Pour le présent travail, nous avons étudié la capacité d’un nouveau système de nanoparticules, basé sur un terpolymère d’amidon, de poly(acide méthacrylique) et de polysorbate 80, à absorber et relâcher de la doxorubicine (Dox) en fonction du pH, et nous avons évalué l’activité anticancereuse de nanoparticules chargées de Dox (Dox-NP) afin de vaincre la résistance multidrogue (RMD) des cellules humaines de cancer du sein in vitro.
This work investigated the capability of a new nanoparticulate system, based on terpolymer of starch, polymethacrylic acid and polysorbate 80, to load and release doxorubicin (Dox) as a function of pH and to evaluate the anticancer activity of Dox-loaded nanoparticles (Dox-NPs) to overcome multidrug resistance (MDR) in human breast cancer cells in vitro. The Dox-NPs were characterized by Fourier transform infrared spectroscopy (FTIR), isothermal titration calorimetry (ITC), transmission electron microscopy (TEM), and dynamic light scattering (DLS). The cellular uptake and cytotoxicity of the Dox-loaded nanoparticles were investigated using fluorescence microscopy, flow cytometry, and a 3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide) (MTT) assay. The nanoparticles were able to load up to 49.7 ± 0.3% of Dox with a high loading efficiency of 99.9 ± 0.1%, while maintaining good colloidal stability. The nanoparticles released Dox at a higher rate at acidic pH attributable to weaker Dox–polymer molecular interactions evidenced by ITC. The Dox-NPs were taken up by the cancer cells in vitro and significantly enhanced the cytotoxicity of Dox against human MDR1 cells with up to a 20-fold decrease in the IC50 values. The results suggest that the new terpolymeric nanoparticles are a promising vehicle for the controlled delivery of Dox for treatment of drug resistant breast cancer.