Browsing by Author Ramialison, Mirana

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Issue DateTitleAuthor(s)Citation
2017Analysis of steric effects in DamID profiling of transcription factor target genesWaardenberg, Ashley; Bouveret, R; de Jong, Danielle; Doan, Tram; Harvey, Richard; Ramialison, Mirana; Schonrock, N; Childrens Medical Research Institute (CMRI)Analysis of steric effects in DamID profiling of transcription factor target genes, Genomics, vol.109, 2, 2017,pp 75-82
2015Cardiac gene expression data and in silico analysis provide novel insights into human and mouse taste receptor gene regulationDos Remedios, Cristobal Guillermo; Stefani, Maurizio; Foster, Simon; Molenaar, Peter; Porrello, Enzo; Ramialison, Mirana; Smith, Nicola; Thomas, Walter; School of Medical Sciences: Bosch Institute; School of Medical Sciences: Anatomy & HistologyCardiac gene expression data and in silico analysis provide novel insights into human and mouse taste receptor gene regulation, Naunyn-Schmiedeberg's Archives of Pharmacology, vol.388, N/A, 2015,pp 1009-1027
2016Formation of the Embryonic Head in the Mouse: Attributes of a Gene Regulatory NetworkFossat, Nicolas; Ip, Chi Kin; Loebel, David; Tam, Patrick; Ramialison, Mirana; Wilkie, Emilie; Childrens Medical Research Institute (CMRI); Children's Hospital Westmead: Childrens Medical Research Ins; Children's Hospital Westmead: Childrens Medical Research Ins; Childrens Medical Research Institute (CMRI)Formation of the Embryonic Head in the Mouse: Attributes of a Gene Regulatory Network, Current Topics in Developmental Biology, vol.117, N/A, 2016,pp 497-521
2014Haematopoietic stem cell induction by somite-derived endothelial cells controlled by meox1Cole, Nicholas; Alaei, Sara; Bereger, Silke; Currie, Peter; Fernandez, Kristine Joy; Gurevich, David; Hall, Thomas; Holloway, Georgina Elizabeth; Lieschke, Graham; Miles, Lee Barry; Nguyen, Phong Dang; Polo, Jose Maria; Ramialison, Mirana; Sonntag, Carmen; Sutherland, Robert; School of Medical Sciences: Anatomy & HistologyHaematopoietic stem cell induction by somite-derived endothelial cells controlled by meox1, Nature, vol.512, 7514, 2014,pp 314-318
2015NKX2-5 mutations causative for congenital heart disease retain functionality and are directed to hundreds of targetsWaardenberg, Ashley; Bhattacharya, Shoumo; Blanpain, Cedric; Bondue, Antoine; Bouveret, Romaric; Chapman, G.; Chen, Chiann-mun; de Jong, Danielle; Doan, Tram; Dunwoodie, Sally; Fonoudi, Hananeh; Harvey, R; Kaur, Gurpreet; Mohamed, Stephanie; Plachta, Nicolas; Ramialison, Mirana; Schonrock, Nicole; Wouters, Merridee A.; Childrens Medical Research Institute (CMRI)NKX2-5 mutations causative for congenital heart disease retain functionality and are directed to hundreds of targets, eLife, vol.4, N/A, 2015,pp 1-30