Mingyu Liang
Department of Physiology
Medical College of Wisconsin
Milwaukee
Wisconsin 53226
USA. )
Name/email consistency: high
- MicroRNA: a new frontier in kidney and blood pressure research. Liang, M., Liu, Y., Mladinov, D., Cowley, A.W., Trivedi, H., Fang, Y., Xu, X., Ding, X., Tian, Z. Am. J. Physiol. Renal Physiol. (2009)
- MicroRNA: a new entrance to the broad paradigm of systems molecular medicine. Liang, M. Physiol. Genomics (2009)
- Molecular networks in Dahl salt-sensitive hypertension based on transcriptome analysis of a panel of consomic rats. Liang, M., Lee, N.H., Wang, H., Greene, A.S., Kwitek, A.E., Kaldunski, M.L., Luu, T.V., Frank, B.C., Bugenhagen, S., Jacob, H.J., Cowley, A.W. Physiol. Genomics (2008)
- Thiol-related genes in diabetic complications: a novel protective role for endogenous thioredoxin 2. Liang, M., Pietrusz, J.L. Arterioscler. Thromb. Vasc. Biol. (2007)
- Integrative pathway knowledge bases as a tool for systems molecular medicine. Liang, M. Physiol. Genomics (2007)
- High throughput gene expression profiling: a molecular approach to integrative physiology. Liang, M., Cowley, A.W., Greene, A.S. J. Physiol. (Lond.) (2004)
- Insights into Dahl salt-sensitive hypertension revealed by temporal patterns of renal medullary gene expression. Liang, M., Yuan, B., Rute, E., Greene, A.S., Olivier, M., Cowley, A.W. Physiol. Genomics (2003)
- Quantitative assessment of the importance of dye switching and biological replication in cDNA microarray studies. Liang, M., Briggs, A.G., Rute, E., Greene, A.S., Cowley, A.W. Physiol. Genomics (2003)
- Renal medullary genes in salt-sensitive hypertension: a chromosomal substitution and cDNA microarray study. Liang, M., Yuan, B., Rute, E., Greene, A.S., Zou, A.P., Soares, P., MCQuestion, G.D., Slocum, G.R., Jacob, H.J., Cowley, A.W. Physiol. Genomics (2002)









