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1.
van Zuydam, N.R.* et al.: A genome-wide association study of diabetic kidney disease in subjects with type 2 diabetes. Diabetes 67, 1414-1427 (2018)
2.
Hrabě de Angelis, M. et al.: Analysis of mammalian gene function through broad-based phenotypic screens across a consortium of mouse clinics. Nat. Genet. 47, 969-978 (2015)
3.
Pabst, G. et al.: Association of low 25-hydroxyvitamin D levels with the frailty syndrome in an aged population: Results from the KORA-Age Augsburg study. J. Nutr. Health Aging 19, 258-264 (2015)
4.
Kruse, M.* et al.: A high-fat diet during pregnancy and lactation targets GIP-regulated metabolic pathways in male offspring in mice. Exp. Clin. Endocrinol. Diabet. 122:P012 (2014)
5.
Mühlenbruch, K.* et al.: Update of the German Diabetes Risk Score and external validation in the German MONICA/KORA study. Diabetes Res. Clin. Pract. 104, 459-466 (2014)
6.
Nejad, F.K.* et al.: A high fat diet during pregnancy and lactation affects the metabolic fate of Gipr-/- mice via hypothalamic insulin signalling and DNA-methylation of lipid metabolism genes. Diabetologia 57, S41 (2014)
7.
Ludwig, T.* et al.: Metabolic and immunomodulatory effects of n-3 fatty acids are different in mesenteric and epididymal adipose tissue of diet-induced obese mice. Am. J. Physiol. Endocrinol. Metab. 304, E1140-E1156 (2013)
8.
Fuchs, H. et al.: Mouse genetics and metabolic mouse phenotyping. In: Suhre, K.* [Eds.]: Genetics Meets Metabolomics: from Experiment to Systems Biology. Springer, 2012. 85-106
9.
Fuchs, H. et al.: Innovations in phenotyping of mouse models in the German Mouse Clinic. Mamm. Genome 23, 611-622 (2012)
10.
Morgan, H.* et al.: EuroPhenome: A repository for high-throughput mouse phenotyping data. Nucleic Acids Res. 38, 1, D577-D585 (2010)