Notch signaling regulates formation of the three‐dimensional architecture of intrahepatic bile ducts in mice EE Sparks, KA Huppert, MA Brown, MK Washington, SS Huppert Hepatology 51 (4), 1391-1400, 2010 | 153 | 2010 |
MYB36 regulates the transition from proliferation to differentiation in the Arabidopsis root LM Liberman, EE Sparks, MA Moreno-Risueno, JJ Petricka, PN Benfey Proceedings of the National Academy of Sciences 112 (39), 12099-12104, 2015 | 151 | 2015 |
Genes and networks regulating root anatomy and architecture G Wachsman, EE Sparks, PN Benfey New Phytologist 208 (1), 26-38, 2015 | 129 | 2015 |
Spatiotemporal signalling in plant development E Sparks, G Wachsman, PN Benfey Nature Reviews Genetics 14 (9), 631-644, 2013 | 107 | 2013 |
Morphological plant modeling: unleashing geometric and topological potential within the plant sciences A Bucksch, A Atta-Boateng, AF Azihou, D Battogtokh, A Baumgartner, ... Frontiers in plant science 8, 900, 2017 | 83 | 2017 |
Rac1 promotes TGF-β-stimulated mesangial cell type I collagen expression through a PI3K/Akt-dependent mechanism SC Hubchak, EE Sparks, T Hayashida, HW Schnaper American Journal of Physiology-Renal Physiology 297 (5), F1316-F1323, 2009 | 72 | 2009 |
Establishment of expression in the SHORTROOT-SCARECROW transcriptional cascade through opposing activities of both activators and repressors EE Sparks, C Drapek, A Gaudinier, S Li, M Ansariola, N Shen, ... Developmental Cell 39 (5), 585-596, 2016 | 60 | 2016 |
Reshaping plant biology: qualitative and quantitative descriptors for plant morphology M Balduzzi, BM Binder, A Bucksch, C Chang, L Hong, AS Iyer-Pascuzzi, ... Frontiers in Plant Science 8, 117, 2017 | 55 | 2017 |
Genetic interactions between hepatocyte nuclear factor‐6 and notch signaling regulate mouse intrahepatic bile duct development in vivo C Vanderpool, EE Sparks, KA Huppert, M Gannon, AL Means, ... Hepatology 55 (1), 233-243, 2012 | 54 | 2012 |
Field‐based mechanical phenotyping of cereal crops to assess lodging resistance L Erndwein, DD Cook, DJ Robertson, EE Sparks Applications in Plant Sciences 8 (8), e11382, 2020 | 51 | 2020 |
Defects in hepatic Notch signaling result in disruption of the communicating intrahepatic bile duct network in mice EE Sparks, DS Perrien, KA Huppert, TE Peterson, SS Huppert Disease models & mechanisms 4 (3), 359-367, 2011 | 46 | 2011 |
Minimum requirements for changing and maintaining endodermis cell identity in the Arabidopsis root C Drapek, EE Sparks, P Marhavy, I Taylor, TG Andersen, JH Hennacy, ... Nature plants 4 (8), 586-595, 2018 | 44 | 2018 |
Uncovering gene regulatory networks controlling plant cell differentiation C Drapek, EE Sparks, PN Benfey Trends in Genetics 33 (8), 529-539, 2017 | 44 | 2017 |
Maize brace roots provide stalk anchorage JW Reneau, RS Khangura, A Stager, L Erndwein, T Weldekidan, ... Plant Direct 4 (11), e00284, 2020 | 34 | 2020 |
Novel imaging modalities shedding light on plant biology: start small and grow big NM Clark, L Van den Broeck, M Guichard, A Stager, HG Tanner, I Blilou, ... Annual review of plant biology 71 (1), 789-816, 2020 | 28 | 2020 |
3-dimensional resin casting and imaging of mouse portal vein or intrahepatic bile duct system TJ Walter, EE Sparks, SS Huppert JoVE (Journal of Visualized Experiments), e4272, 2012 | 27 | 2012 |
Multiple brace root phenotypes promote anchorage and limit root lodging in maize AN Hostetler, L Erndwein, JW Reneau, A Stager, HG Tanner, D Cook, ... Plant, Cell & Environment 45 (5), 1573-1583, 2022 | 26 | 2022 |
Bracing for sustainable agriculture: the development and function of brace roots in members of Poaceae AN Hostetler, RS Khangura, BP Dilkes, EE Sparks Current Opinion in Plant Biology 59, 101985, 2021 | 24 | 2021 |
Spatiotemporal analysis identifies ABF2 and ABF3 as key hubs of endodermal response to nitrate O Contreras-López, EA Vidal, E Riveras, JM Alvarez, TC Moyano, ... Proceedings of the National Academy of Sciences 119 (4), e2107879119, 2022 | 23 | 2022 |
The contribution of root systems to plant nutrient acquisition EE Sparks, PN Benfey Plant macronutrient use efficiency, 83-92, 2017 | 16 | 2017 |