Leonor G. "Contribute data to the 6th edition of the IDF Diabetes Atlas." Diabetes Res Clin 7 Pract. 100.2 (2013): 280-281. 8 9Guariguata L. Contribute data to the 6th edition of the IDF Diabetes Atlas[J]. Diabetes Res Clin Pract, 2013,...
Contribute data to the 6th edition of the \\{IDF\\} Diabetes Atlas Diabetes is an increasingly important condition globally and robust estimates of its prevalence are required for allocating resources. Data sources from 19... Leonor,Guariguata - 《Diabetes Research & Clinical Practice》 被引量:...
www.nature.com/scientificreports OPEN received: 12 May 2016 accepted: 14 November 2016 Published: 09 December 2016 Acid-sensing ion channels are expressed in the ventrolateral medulla and contribute to central chemoreception Nana Song1,2,*, Ruijuan Guan1,*, Qian Jiang3,*, Comron J....
As one of the parties to the Paris Agreement, the European Union has an evolving ambition for meeting climate targets and has introduced a policy with the overarching aim to make the EU an economy with net-zero greenhouse gas emissions by 2050 [1]. The resolution on the European Green Deal...
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The International Diabetes Federation (IDF) is looking for new sources of diabetes prevalence data to include in the 6th edition of the IDF Diabetes Atlas [1,2]. The Atlas is the authoritative source of information on the burden of diabetes for health professionals, scientists, economists, ...
International Journal of Molecular Sciences Article Microvesicles Contribute to the Bystander Effect of DNA Damage Xiaozeng Lin 1,2,3, Fengxiang Wei 4, Pierre Major 5, Khalid Al-Nedawi 1,2,3, Hassan A. Al Saleh 1,2,3 and Damu Tang 1,2,3,* 1 Division of Nephrology, Department of ...
cancers Article PPAR-Responsive Elements Enriched with Alu Repeats May Contribute to Distinctive PPARγ–DNMT1 Interactions in the Genome Amit Sharma 1,2,* , Fabian Tobar-Tosse 3 , Tikam Chand Dakal 4, Hongde Liu 5 , Arijit Biswas 6 , Athira Menon 4, Anoosha Paruchuri 7, Panagiotis Ka...
DR5::GUS expression patterns in seedlings of F1, F2, and F3 generations indicated that AtTGG4 and AtTGG5 contributed to auxin biosynthesis in roots. The proposed mechanism is that indolic glucosinolate is transported to the root-tip and converted to indole-3-acetonitrile (IAN) in the ...
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