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1 th) to 60% (OSCC in the alveolar part of the mandible).
2 for the maxilla and 94.9% (SD 15.6%) for the mandible.
3 c tumour with a strong preponderance for the mandible.
4 expressing epithelial cells in the embryonic mandible.
5 (51% vs. 8%, P = 4 x 10(-62)) but not in the mandible.
6 F mutations are predominant in tumors of the mandible.
7 giant keratocystic odontogenic tumor of the mandible.
8 nge, 0.7-3.3 cm), occurring primarily in the mandible.
9 and craniofacial abnormalities such as small mandible.
10 c forces clinically modify the growth of the mandible.
11 109 patients with 280 implants placed in the mandible.
12 rus based on a single, relatively incomplete mandible.
13 we identify at least four distinct types of mandible.
14 and BIC among the groups in the maxilla and mandible.
15 ental implant placed in posterior maxilla or mandible.
16 Four implants were placed in each edentulous mandible.
17 less peri-implant bone loss in the posterior mandible.
18 ding craniofacial dysmorphology with a small mandible.
19 major forces affecting the form of the human mandible.
20 and periodontal and implant surgeries in the mandible.
21 ng potential of osseous defects in the human mandible.
22 rly cap stages, and severe hypoplasia of the mandible.
23 l plate perforation for IIP in the posterior mandible.
24 gual nerve and perform safe surgeries in the mandible.
25 nd distal surfaces or the maxilla versus the mandible.
26 e implants were submerged on one side of the mandible.
27 technique was planned for both areas in the mandible.
28 the proximal aboral region of the developing mandible.
29 length) placed in the premolar region of the mandible.
30 chondrogenesis in the proximal region of the mandible.
31 een the alveolar process and the body of the mandible.
32 AF V600E mutations in both UAM and AM of the mandible.
33 on in conventional ameloblastoma (AM) of the mandible.
34 domain results in partial duplication of the mandible.
35 bmarginally around first molars at the right mandible.
36 ium also partially restored outgrowth of the mandible.
37 growth located on the lingual surface of the mandible.
38 rs ago for a tooth from the Irhoud 3 hominin mandible.
39 ciated Le Fort fracture or a fracture of the mandible.
40 t appears in the archived CBCT images of the mandible.
41 into bone and connective tissue to form the mandible.
42 ured aggregates or in developing whole mouse mandibles.
43 etaphyseal dysplasia, including hyperostotic mandibles.
44 ative taxonomic analyses of isolated hominin mandibles.
45 equired for normal metamorphic growth of the mandibles.
46 implant after 2 months of healing in minipig mandibles.
47 0.0001) were evident in Ddr1(-/-) versus WT mandibles.
48 xes itself permanently to a substrate by its mandibles.
49 ch of the fossil record for dogs consists of mandibles.
50 classifies 99.5% of the modern dog and wolf mandibles.
51 rphology and "Boltcutters", with short, wide mandibles.
52 ed symphyseal outlines from 180 recent human mandibles (90 male, 90 female) representing nine geograp
54 ng for an immediate implant in the posterior mandible, a CT scan taken before tooth extraction can be
55 on masticatory function elsewhere along the mandible, a phenomenon likely to characterize the evolut
57 malities, including undergrowth of the lower mandible, accompanied in some individuals by cranial asy
58 dentified as dogs and none of the 20 Ivolgin mandibles, an Iron Age site in southern Russia, were ide
60 pmental defects, including hypoplasia of the mandible and asymmetric fusion of ribs to the sternum.
61 rate capabilities of the ITOP by fabricating mandible and calvarial bone, cartilage and skeletal musc
63 bsence of all but the most distal tip of the mandible and complete absence of the inner, middle and e
65 hell ants captured other arthropods between mandible and horn in a manner that could only be achieve
69 ucent areas and marked bony expansion in the mandible and maxilla, with sparing of the mandibular con
72 measurements in the posterior region of the mandible and provide adequate visualization of the mandi
77 occupation at Mezzena, we analysed the human mandible and several cranial fragments from the site usi
78 he masticatory-functional hypothesis for the mandible and suggesting population continuity among farm
79 , a fibrocartilaginous structure between the mandible and temporal bone, is implicated in temporomand
80 alveolar process compared to the body of the mandible and that the bone anabolic activity is greater
81 haracterized by bilateral enlargement of the mandible and the maxilla that presents with varying degr
83 reduced expression of Endothelin1 (EDN1) in mandible and transcription factors that are critical for
84 or maintaining the dorsal innervation of the mandible and underlines the dorsal canaliculi sensorial
87 (for example, antlers, horns, tail feathers, mandibles and dewlaps), show that the giant sperm of som
90 arts of early oxyporines, including enlarged mandibles and greatly enlarged apical labial palpomeres
91 tentorial bars and superlinguae between the mandibles and hypopharynx, reinforcing an alliance betwe
92 smotic mini-pumps were implanted in animals, mandibles and tibiae were isolated, and multinucleated c
93 l bone/bone-marrow-derived MSCs (OMSCs) from mandibles and verified their MSC characteristics by sing
94 f-reported pain measures, the arch location (mandible), and number of treated sites (>=3 teeth) (P <
95 iscovered HSC-like cells in postnatal murine mandible, and benchmarked them with donor-matched, mesod
96 splay a round skull, hypoplastic maxilla and mandible, and cleft palate resulting from a failure of p
97 present a virtual reconstruction of the OH 7 mandible, and compare it to other early Homo fossils.
100 eatures are two characters: the dentary-only mandible, and the tribosphenic molar with its triangulat
104 ic structures are absent, but the tongue and mandible are relatively developed in the conditional mut
105 gn neoplasm which develops in the maxilla or mandible, arising from the dental lamina or basal cells
108 "Gammas", "Alphas" which express large, long mandibles, "Betas" which have long mandibles with differ
111 portantly, upon implantation into nude mice, mandible BMSCs formed 70% larger bone nodules containing
112 teogenic potential and augmented capacity of mandible BMSCs to induce bone formation in vitro and in
113 f the study, BV/TV%, proximal femur and hemi-mandible bone mineral content and bone mineral density,
114 entified specific defects in incisor, molar, mandible, bone, and root development and late stage enam
116 indicates that the mutation does not affect mandible, but causes premature fusion of the premaxilla-
118 ults in defects in formation of the proximal mandible by shifting expression of Fgf8, Bmp4 and their
124 ivo effect, we employed a Sprague-Dawley rat mandible defect model utilizing 1 microg (optimal) or 0.
131 revealed that the adhesion of the tongue and mandible expressed the epithelial markers E-Cad and P63.
133 Fifteen patients suffering from unilateral mandible fractures involving the inferior alveolar nerve
136 d micro-computed tomography (mu-CT) scans of mandibles, from eight myrmecophagous species with reduce
137 y, which in turn leads to an abnormal palate-mandible fusion and prevents palatal shelf elevation.
138 rvation of the diagnostically important OH 7 mandible has hindered attempts to compare this specimen
139 CNC-derived cells in the proximal region of mandible have a cell intrinsic requirement for TGF-beta
140 mice we found that the neural crest-derived mandible heals with neural crest-derived skeletal stem c
141 ort differences in the mechanisms underlying mandible homeostasis and the pathophysiology of diseases
142 ion, including fully penetrant cleft palate, mandible hypoplasia and deficits in cranial base ossific
145 aberrant fusion between the palate shelf and mandible in addition to severely deformed palatal shelve
147 and basal osseous dimensions of the anterior mandible in healthy individuals and evaluate potential c
148 apical bone and the anatomy of the posterior mandible in the area of the anticipated extraction site.
151 t the time of implant placement in posterior mandible is a potential surgical complication, and prese
152 pled with a distinctive appearance where the mandible is enlarged and the maxilla is foreshortened.
153 During its development, the majority of the mandible is formed through intramembranous ossification
154 urprisingly we found that the Riparo Mezzena mandible is not from a Neanderthal but belonged to an an
155 not evolve as rapidly as the cranium and the mandible is not reliable for identifying early dog fossi
161 that our analysis of Australopithecus sediba mandibles is flawed and that specimen LD 350-1 cannot be
162 gion of BA1, which gives rise to most of the mandible, is dependent upon an optimal level of bone mor
170 hin protrusion, we documented alterations of mandible length in mice with modified Edar funtion.
172 ges, as all have a modified piercing-sucking mandible-maxillary complex that allows them to drain flu
173 Previous studies have suggested that the mandible may be more influenced by mechanical loading th
176 ty, 0.97 [95% CI, 0.94-0.98]), retrognathia (mandible measuring <9 cm from the angle of the jaw to th
177 haracterized by absence or hypoplasia of the mandible, microstomia, hypoglossia/aglossia, and variabl
180 employed to analyse chewing biomechanics and mandible morphology to, firstly, establish the variation
181 st gene expression as well as atrophy in the mandible muscles of its ant host, but it is unknown how
182 cases were located in the posterior region: mandible (n = 12/14; 86%) and maxilla (n = 2/14; 14%).
183 d that the origins of the larger, dysmorphic mandible observed in adult Ts1Rhr mice develop from larg
186 ection (osteomyelitis) was identified in the mandible of a 275-million-year-old captorhinid eureptile
190 agmentary remains of an associated skull and mandible of Clevosaurus hadroprodon sp. nov., a new taxo
191 of gene expression were also observed in the mandible of Ctip2(-/-) mice: expression of the ameloblas
195 We demonstrate that the head capsule and mandibles of haidomyrmecines are uniquely integrated as
196 Replicate samples were implanted into the mandibles of host Yucatan mini-pigs and grown for 3 or 6
199 examples of exaggerated traits, such as the mandibles of stag beetles (Lucanidae), the claspers of p
201 , willingness to engage in trophallaxis, and mandible opening were affected by both hunger and ethano
202 Inebriated bees were more likely to exhibit mandible opening, which may represent a form of aggressi
204 opulations derived from regions of the fetal mandible or calvaria that do not undergo endochondral os
206 Here, we utilize an established ex vivo mandible organ culture model to model these complex inte
207 initiation and development, defects in early mandible patterning and altered expression of key patter
208 at ALK5 regulates tooth initiation and early mandible patterning through a pathway independent of Tgf
209 implant surface in the anterior maxillae or mandible (premolar-premolar) and 52 carefully selected c
210 and observations for Australopithecus sediba mandibles presented are incorrect or are not included in
212 Rehbachiella kinnekullensis [3] and isolated mandibles preserved as small carbonaceous fossils [4-6]
213 known fossil 'ape', represented by a partial mandible preserving dental features that place it with '
216 s, we over-expressed in the developing chick mandible, replication-competent retroviruses carrying tr
217 he regeneration of large bone defects in the mandible require a preclinical model that accurately rec
218 y fusion between the maxilla and hypoplastic mandible, resembling the bony syngnathia syndrome in hum
219 that was bound by Smad1/5 in the developing mandible, revealing direct Smad-mediated regulation.
223 , some robust specimens, such as the partial mandibles Sangiran 5 and Sangiran 6a, were formerly vari
224 Short implants in the posterior area of the mandible seem to be preferable to vertical augmentation
225 ero-posterior relation of the maxilla to the mandible) seem to be the skeletal subspaces that receive
227 e treated with scaling and root planing, and mandible sides were randomly selected to receive three w
228 All Has2(f/f);Hand2-Cre pups showed reduced mandible size and about 50% of them had cleft palate wit
229 Wnt1-Cre fetuses showed dramatically reduced mandible size and complete failure of palatal shelf elev
230 loci (QTL) exhibiting imprinting effects on mandible size and shape traits in a large F(3) populatio
231 We discovered a total of 51 QTL affecting mandible size and shape, 6 of which exhibited difference
232 showed that only one of these QTL (affecting mandible size) exhibited a pattern consistent with true
233 asts and the dentin or into the pulp core of mandible slices and subsequently cultured for up to 10 d
234 0 days after the initiation of the study and mandible specimens were subjected for morphometric analy
235 pecies exhibit a linear relationship between mandible stiffness and volume, as expected in isometric
242 Mice lacking Nog in NCCs have an enlarged mandible that results from increased cell proliferation
243 mong living and extinct ants and scythe-like mandibles that extend high above the head, both demonstr
245 thanized, and intracardiac blood samples and mandible tissues were obtained for biochemical and histo
246 of the study, intracardiac blood samples and mandible tissues were obtained for histologic, biochemic
253 new multitissue model of composite hemiface/mandible/tongue allograft containing lymphoid and vascul
254 role of different components of the hemiface/mandible/tongue allograft on induction and maintenance o
258 (n=8)-allograft rejection controls-hemiface/mandible/tongue transplants performed across major histo
259 nd2 is sufficient for upper jaw (maxilla)-to-mandible transformation by regulating the expression of
260 is proposed based on the four corners of the mandible (two angles and two canines): class I (lateral)
263 tress, and strain regimes in the cranium and mandible, understanding the relative importance of these
264 or Islet1, resulting in a distally truncated mandible via unbalanced cell apoptosis and decreased cel
269 e buccal cortical plate thickness in dentate mandibles was 2.76 +/- 0.13 mm, whereas in edentulous po
274 hy patients needing surgery in the posterior mandible were enrolled in this observational study (grou
275 feeding modules, the pulp of 4 molars on the mandible were exposed, and meal duration was measured fo
277 At termination, animals were sacrificed, and mandibles were collected for microcomputed tomography (m
280 KR/J (AKR) control mice were sacrificed, and mandibles were prepared for stereomicroscopy and histolo
281 eks after bioreactor implantation, the ovine mandibles were repaired with the autologous bony tissue
283 t in primates, hard food eaters have stiffer mandibles when compared to those that rely on softer die
285 and CT were significantly longer than in the mandible, whereas for the JE, no statistically significa
286 r phenotype is likely due to hyperostosis of mandibles, which distinguishes Ank (KI/KI) mice from the
287 ted regurgitation pellets to recover lemming mandibles, which were used to infer prey species and siz
288 a rigid body with the cycling motion of the mandible, while the posterior section of the tongue undu
290 or restoring atrophic posterior areas of the mandible with dental implants and compare these procedur
291 was to describe the anatomy in the posterior mandible with respect to the inferior alveolar nerve (IA
292 we report the discovery of a partial hominin mandible with teeth from the Ledi-Geraru research area,
293 rge, long mandibles, "Betas" which have long mandibles with different morphology and "Boltcutters", w
294 e neural crest transformed the maxillae into mandibles with duplicated Meckel's cartilage, which resu
297 cantly greater mRC and CRC than teeth in the mandible (with the lower anterior [fifth sextant] showin
298 g was found at buccal furcation sites in the mandible, with a kappa-coefficient of 0.52, and buccal f
299 partially decoupled between the cranium and mandible, with cranial evolution more strongly driven by