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1 osteogenesis in areas where repair occurs by intramembranous ossification.
2 ferential roles of TRPM7 in endochondral and intramembranous ossification.
3 ng ectopic cartilage formation and excessive intramembranous ossification.
4 plastic clavicles that result from defective intramembranous ossification.
5  macrocephaly, which affect endochondral and intramembranous ossification.
6 es of the mammalian skull vault form through intramembranous ossification.
7 teoblasts from mesenchymal cells in areas of intramembranous ossification.
8 n perichondrial tissues, including excessive intramembranous ossification all along the perichondrial
9           Interestingly, there was excessive intramembranous ossification along the perichondrium, ac
10           Interestingly, there was excessive intramembranous ossification along the perichondrium, ac
11 g cells exhibited a lack of endochondral and intramembranous ossification and a lack of mature osteob
12 l vault and craniofacial complex develop via intramembranous ossification, and are separated by fibro
13 formations that affect both endochondral and intramembranous ossification, and is the basis for sever
14 ) mice exhibited a delay in endochondral and intramembranous ossification as well as in chondrocyte d
15 erated endochondral ossification but delayed intramembranous ossification, as well as skeletal deform
16 e-differentiation of the digit tip occurs by intramembranous ossification forming a trabecular bone n
17 he mechanism of craniosynostosis, we studied intramembranous ossification in Axin2-null mice.
18 indings help us understand the mechanisms of intramembranous ossification in general, which occurs no
19 sses the formation of cartilage and promotes intramembranous ossification in the skull.
20      Premature closure of cranial sutures in intramembranous ossification is a feature of syndromes d
21 vere defects in skeletal development, though intramembranous ossification occurs to some extent.
22  of cranial sutures, caused by deficiency in intramembranous ossification, occurs at early postnatal
23 tilage and FGFR2 and FGFR3 have roles during intramembranous ossification of mandibular bones.
24 ibits parietal ossification, suggesting that intramembranous ossification of this mesodermal bone req
25 , and craniofacial bones derived from either intramembranous ossification or mesenchymal cells of the
26 on during normal growth and bone healing via intramembranous ossification proceeded normally in the a
27 mmalian skull, which forms predominantly via intramembranous ossification, requires precise pre- and
28 esenchyme in the mandibular primordium where intramembranous ossification takes place.
29 ranial connective tissue framework undergoes intramembranous ossification to form skull bones (calvar
30           Skeletal tissues develop either by intramembranous ossification, where bone is formed withi
31 e majority of the mandible is formed through intramembranous ossification whereas the proximal region
32                        During the process of intramembranous ossification, which leads to the formati

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