Thomas Maynard
Overview
Explore the profile of Thomas Maynard including associated specialties, affiliations and a list of published articles.
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Articles
5
Citations
431
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0
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Recent Articles
1.
Welby L, Caudill H, Yitsege G, Hamad A, Bunyak F, Zohn I, et al.
Front Neurol
. 2020 Feb;
11:4.
PMID: 32082240
Disrupted development of oropharyngeal structures as well as cranial nerve and brainstem circuits may lead to feeding and swallowing difficulties in children with 22q11. 2 deletion syndrome (22q11DS). We previously...
2.
Chau K, Springel M, Broadbelt K, Park H, Topal S, Lun M, et al.
Dev Cell
. 2015 Dec;
35(6):789-802.
PMID: 26702835
After neural tube closure, amniotic fluid (AF) captured inside the neural tube forms the nascent cerebrospinal fluid (CSF). Neuroepithelial stem cells contact CSF-filled ventricles, proliferate, and differentiate to form the...
3.
Yan B, Neilson K, Ranganathan R, Maynard T, Streit A, Moody S
Dev Dyn
. 2014 Nov;
244(2):181-210.
PMID: 25403746
Background: Six1 plays an important role in the development of several vertebrate organs, including cranial sensory placodes, somites, and kidney. Although Six1 mutations cause one form of branchio-otic syndrome (BOS),...
4.
Sarkar A, Nuwayhid S, Maynard T, Ghandchi F, Hill J, LaMantia A, et al.
Dev Biol
. 2014 May;
392(2):368-80.
PMID: 24855001
The placenta plays a critical role in the growth and survival of the fetus. Here we demonstrate that the Homologous to the E6-AP Carboxyl Terminus (HECT) domain E3 ubiquitin ligase,...
5.
Lehtinen M, Zappaterra M, Chen X, Yang Y, Hill A, Lun M, et al.
Neuron
. 2011 Mar;
69(5):893-905.
PMID: 21382550
Cortical development depends on the active integration of cell-autonomous and extrinsic cues, but the coordination of these processes is poorly understood. Here, we show that the apical complex protein Pals1...