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1 omeotic transformation of the lower jaw into upper jaw.
2 erimposed a mammalian-like morphology on the upper jaw.
3 iple signaling centers within the developing upper jaw.
4  an EDNRA gain of function in the developing upper jaw.
5  facial ectoderm regulate development of the upper jaw.
6  in which the lower jaw is transformed to an upper jaw.
7 d radiation with bilateral pit organs in the upper jaw.
8 t a homeotic transformation of lower jaws to upper jaws.
9                        When a whale kept its upper jaw above the sea surface, many anchovies in the t
10 at these C11 domains integrate action at the upper jaw and center of pol III during termination.
11 te of pus from 5 periapical abscesses of the upper jaw and their corresponding maxillary sinusitis we
12 l crest cells regulate size and shape of the upper jaw, and that signaling by Bone morphogenetic prot
13 onstraints present in the quadrate-jugal bar-upper jaw-braincase-quadrate kinematic chain as well as
14 ally expressed in the maxillary (prospective upper jaw) but not mandibular arch, is upregulated in th
15 ontinuous variation in the morphology of the upper jaw, but despite its potential explanatory power,
16 l cord, hypothalamus, pituitary, somites and upper jaw, but that Boc might negatively regulate Hh sig
17 that will form the anterior neurocranial and upper jaw cartilage.
18 erygoid process of the palatoquadrate in the upper jaw, condenses upon the upper or roof layer of the
19 uced in size and often fused to their dorsal upper jaw counterparts.
20 the jaw primordium such that Dlx1/2 regulate upper jaw development, while Dlx5/6 confer the lower jaw
21 tween WNT9B and FGF signaling during lip and upper jaw development.
22  extension and dorso-ventral polarity of the upper jaw in birds.
23  transformation of lower jaw structures into upper jaw-like structures, suggesting that some cephalic
24 rovide evidence that Hand2 is sufficient for upper jaw (maxilla)-to-mandible transformation by regula
25                            Consequently, the upper jaw, nasal, ocular and telencephalic structures ar
26                                          The upper jaws of birds, unlike those in many tetrapods, mov
27  from the maxillary arch (primordium for the upper jaw) of mouse embryos.
28 sis and proximal rhynchokinesis in which the upper jaw pivots around the nasal-frontal (N-F) hinge.
29      We report here that the frontonasal and upper jaw primordia cannot be formed after conditional a
30                 We show that the majority of upper jaw shape variation can be explained by progressiv
31 1 and Dlx2 (Dlx1/2-/-) causes defects in the upper jaw, whereas Dlx5/6(-/-) results in homeotic trans

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