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Birth Defects Research. Part A, Clinical and Molecular Teratology|September 5, 2012
Does the cranial mesenchyme contribute to neural fold elevation during neurulation?Irene E Zohn, Anjali A SarkarCurrent Topics in Developmental Biology|February 3, 2009
Modeling neural tube defects in the mouseIrene E Zohn, Anjali A SarkarJournal of Visualized Experiments : Jove|February 6, 2013
An explant assay for assessing cellular behavior of the cranial mesenchymeAnjali A Sarkar, Irene E ZohnBirth Defects Research. Part A, Clinical and Molecular Teratology|July 31, 2010
The visceral yolk sac endoderm provides for absorption of nutrients to the embryo during neurulationIrene E Zohn, Anjali A SarkarThe Journal of Cell Biology|March 21, 2012
Hectd1 regulates intracellular localization and secretion of Hsp90 to control cellular behavior of the cranial mesenchymeAnjali A Sarkar, Irene E ZohnDisease Models & Mechanisms|December 23, 2018
The ubiquitin ligase HECTD1 promotes retinoic acid signaling required for development of the aortic archKelsey F Sugrue, Anjali A Sarkar, Linda Leatherbury, et al.Placenta|February 25, 2016
Abnormal labyrinthine zone in the Hectd1-null placentaAnjali A Sarkar, Julia A Sabatino, Kelsey F Sugrue, et al.Developmental Biology|May 24, 2014
Hectd1 is required for development of the junctional zone of the placentaAnjali A Sarkar, Samer J Nuwayhid, Thomas Maynard, et al.Birth Defects Research. Part C, Embryo Today : Reviews|June 14, 2012
Mouse as a model for multifactorial inheritance of neural tube defectsIrene E ZohnNeuroscience Letters|December 11, 2019
Hsp90 and complex birth defects: A plausible mechanism for the interaction of genes and environmentIrene E ZohnPageof 5