Growth and development: hereditary and mechanical modulations.
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[1] S. Herring,et al. Craniofacial sutures: Morphology, growth, and in vivo masticatory strains , 1999, Journal of morphology.
[2] B. Hall. Selective proliferation and accumulation of chondroprogenitor cells as the mode of action of biomechanical factors during secondary chondrogenesis. , 1979, Teratology.
[3] J. Mao,et al. Proteoglycan Expression in the Rat Temporomandibular Joint in Response to Unilateral Bite Raise , 1998, Journal of dental research.
[4] M. Eccles,et al. Jackson-Weiss and Crouzon syndromes are allelic with mutations in fibroblast growth factor receptor 2 , 1994, Nature Genetics.
[5] Jack C. Yu,et al. Extrinsic Tension Results in FGF-2 Release, Membrane Permeability Change, and Intracellular Ca ++ Increase in Immature Cranial Sutures , 2001, The Journal of craniofacial surgery.
[6] Frederic Shapiro,et al. Structural Stages in the Development of the Long Bones and Epiphyses: A Study in the New Zealand White Rabbit , 2002, The Journal of bone and joint surgery. American volume.
[7] D L Turpin,et al. Future of the AJO-DO online. American Journal of Orthodontics and Dentofacial Orthopedics. , 1999, American journal of orthodontics and dentofacial orthopedics : official publication of the American Association of Orthodontists, its constituent societies, and the American Board of Orthodontics.
[8] H. Nah. Suture biology: Lessons from molecular genetics of craniosynostosis syndromes. , 2000, Clinical orthodontics and research.
[9] E. Livne,et al. Enhancement of Toluidine Blue Staining by Transforming Growth Factor-β, Insulin-Like Growth Factor and Growth Hormone in the Temporomandibular Joint of Aged Mice , 2000, Cells Tissues Organs.
[10] M. Tanaka,et al. Changes of cancellous bone mass in rat mandibular condyle following ovariectomy. , 1999, Bone.
[11] D. Rowe,et al. Ectopic Msx2 overexpression inhibits and Msx2 antisense stimulates calvarial osteoblast differentiation. , 1999, Developmental biology.
[12] J. Greenspan,et al. Histochemical studies of chondrocyte function in the cartilage of the mandibular codyle of the rat. , 1966, Journal of anatomy.
[13] P. Vig. Orthodontics, current principles and techniques , 1985 .
[14] D. Carlson,et al. Response of the mandibular joint to loss of incisal function in the rat. , 1986, Acta anatomica.
[15] T. Komori,et al. Tensile Stress Induces Bone Morphogenetic Protein 4 in Preosteoblastic and Fibroblastic Cells, Which Later Differentiate into Osteoblasts Leading to Osteogenesis in the Mouse Calvariae in Organ Culture , 2001, Journal of bone and mineral research : the official journal of the American Society for Bone and Mineral Research.
[16] B. Boyan,et al. Activation of Latent Transforming Growth Factor β1 by Stromelysin 1 in Extracts of Growth Plate Chondrocyte‐Derived Matrix Vesicles , 2001, Journal of bone and mineral research : the official journal of the American Society for Bone and Mineral Research.
[17] S. Volk,et al. Regulating the Regulators of Chondrocyte Hypertrophy , 1999, Journal of bone and mineral research : the official journal of the American Society for Bone and Mineral Research.
[18] D. Burr,et al. Do Bone Cells Behave Like a Neuronal Network? , 2002, Calcified Tissue International.
[19] Steven A. Goldstein,et al. Chondrocyte Differentiation is Modulated by Frequency and Duration of Cyclic Compressive Loading , 2001, Annals of Biomedical Engineering.
[20] R. Nanda,et al. The effects of chin cup therapy on the mandible: a longitudinal study. , 1984, American journal of orthodontics.
[21] Dennis R. Carter,et al. Mechanobiology of Skeletal Regeneration , 1998, Clinical orthopaedics and related research.
[22] D. Donoghue,et al. Constitutive activation of fibroblast growth factor receptor 3 by the transmembrane domain point mutation found in achondroplasia. , 1996, The EMBO journal.
[23] F. Guilak. Compression-induced changes in the shape and volume of the chondrocyte nucleus. , 1995, Journal of biomechanics.
[24] M. Longaker. Role of TGF-beta signaling in the regulation of programmed cranial suture fusion. , 2001, The Journal of craniofacial surgery.
[25] R. Nanda,et al. Biomechanical and clinical considerations of a modified protraction headgear. , 1980, American journal of orthodontics.
[26] K. Fukada,et al. In situ hybridization and immunohistochemistry of bone sialoprotein and secreted phosphoprotein 1 (osteopontin) in the developing mouse mandibular condylar cartilage compared with limb bud cartilage , 2002, Journal of anatomy.
[27] W. Reardon,et al. Craniosynostosis. Diagnosis, evaluation and management. , 2000, Journal of medical genetics.
[28] J. vanLimborgh. The role of genetic and local environmental factors in the control of postnatal craniofacial morphogenesis. , 1972 .
[29] R. Maxson,et al. Premature suture closure and ectopic cranial bone in mice expressing Msx2 transgenes in the developing skull. , 1995, Proceedings of the National Academy of Sciences of the United States of America.
[30] P. Marie,et al. FGF signaling pathways in endochondral and intramembranous bone development and human genetic disease. , 2002, Genes & development.
[31] G. Molyneux,et al. The effects of induced dental malocclusion on the fibrocartilage disc of the adult rabbit temporomandibular joint. , 1993, Archives of oral biology.
[32] Takayuki Kuroda,et al. Common Regulation of Growth Arrest and Differentiation of Osteoblasts by Helix-Loop-Helix Factors , 2001, Molecular and Cellular Biology.
[33] E. Jabs,et al. A mutation in the homeodomain of the human MSX2 gene in a family affected with autosomal dominant craniosynostosis , 1993, Cell.
[34] W. Atchley,et al. The epigenetic influence of growth hormone on skeletal development. , 1993, Growth, development, and aging : GDA.
[35] H. Nah,et al. Type II collagen mRNA containing an alternatively spliced exon predominates in the chick limb prior to chondrogenesis. , 1991, The Journal of biological chemistry.
[36] J. Aubin,et al. Advances in the osteoblast lineage. , 1998, Biochemistry and cell biology = Biochimie et biologie cellulaire.
[37] J. van Limborgh. The role of genetic and local environmental factors in the control of postnatal craniofacial morphogenesis. , 1972, Acta morphologica Neerlando-Scandinavica.
[38] J. Mao,et al. Mechanobiology of Craniofacial Sutures , 2002, Journal of dental research.
[39] Y. Chai,et al. Receptor‐regulated and inhibitory Smads are critical in regulating transforming growth factorβ–mediated Meckel's cartilage development , 2002, Developmental dynamics : an official publication of the American Association of Anatomists.
[40] H. Luder,et al. Cartilage matrix production and chondrocyte enlargement as contributors to mandibular condylar growth in monkeys (Macaca fascicularis). , 1991, American journal of orthodontics and dentofacial orthopedics : official publication of the American Association of Orthodontists, its constituent societies, and the American Board of Orthodontics.
[41] P. Pirttiniemi,et al. Effect of reduced articular function on deposition of type I and type II collagens in the mandibular condylar cartilage of the rat. , 1996, Archives of oral biology.
[42] P. Castelein. Facial growth. , 1971, Dental student.
[43] M. Ueda,et al. The influence of compressive loading on growth of cartilage of the mandibular condyle in vitro. , 1998, Archives of oral biology.
[44] B. Boyan,et al. Transforming growth factor-beta1 regulation of growth zone chondrocytes is mediated by multiple interacting pathways. , 2002, Biochimica et biophysica acta.
[45] K. Lindsay. An autoradiographic study of cellular proliferation of the mandibular condyle after induced dental malocclusion in the mature rat. , 1977, Archives of oral biology.
[46] Geoffrey H. Sperber,et al. Fundamentals of Craniofacial Growth , 1998 .
[47] H. Nah,et al. The Roles of Annexins and Types II and X Collagen in Matrix Vesicle-mediated Mineralization of Growth Plate Cartilage* , 2000, The Journal of Biological Chemistry.
[48] C. Rubin,et al. Skeletal cell stresses and bone adaptation. , 1998, The American journal of the medical sciences.
[49] T. Yamashiro,et al. Differential responses of mandibular condyle and femur to oestrogen deficiency in young rats. , 1998, Archives of oral biology.
[50] S. McGorray,et al. Effectiveness of early treatment of Class II malocclusion. , 2002, American journal of orthodontics and dentofacial orthopedics : official publication of the American Association of Orthodontists, its constituent societies, and the American Board of Orthodontics.
[51] M. Meikle. In vivo transplantation of the mandibular joint of the rat; an autoradiographic investigation into cellular changes at the condyle. , 1973, Archives of oral biology.
[52] C. Dolce,et al. Immediate early-gene induction in rat osteoblastic cells after mechanical deformation. , 1996, Archives of oral biology.
[53] C. Deng,et al. TGF-β/Smad3 Signals Repress Chondrocyte Hypertrophic Differentiation and Are Required for Maintaining Articular Cartilage , 2001, The Journal of cell biology.
[54] J. Heeley,et al. The cartilage of the mandibular condyle. , 1973, Oral sciences reviews.
[55] R. Maxson,et al. Msx2 gene dosage influences the number of proliferative osteogenic cells in growth centers of the developing murine skull: a possible mechanism for MSX2-mediated craniosynostosis in humans. , 1999, Developmental biology.
[56] L A Opperman,et al. Cranial sutures as intramembranous bone growth sites , 2000, Developmental dynamics : an official publication of the American Association of Anatomists.
[57] K. Takada,et al. Changes in dentofacial morphology in skeletal Class III children treated by a modified maxillary protraction headgear and a chin cup: a longitudinal cephalometric appraisal. , 1993, European journal of orthodontics.
[58] R. Hinton,et al. Age-associated changes in decorin in rat mandibular condylar cartilage. , 2000, Archives of oral biology.
[59] Rupal V Patel,et al. Microstructural and elastic properties of the extracellular matrices of the superficial zone of neonatal articular cartilage by atomic force microscopy. , 2003, Frontiers in bioscience : a journal and virtual library.
[60] John D. Muir,et al. Orthodontics: Current principles and techniques , 1985 .
[61] K. Törrönen,et al. cDNA array reveals mechanosensitive genes in chondrocytic cells under hydrostatic pressure. , 2002, Biochimica et biophysica acta.
[62] Sundar Srinivasan,et al. Low‐Magnitude Mechanical Loading Becomes Osteogenic When Rest Is Inserted Between Each Load Cycle , 2002, Journal of bone and mineral research : the official journal of the American Society for Bone and Mineral Research.
[63] P. Marie,et al. Increased bone formation and osteoblastic cell phenotype in premature cranial suture ossification (craniosynostosis) , 1996, Journal of bone and mineral research : the official journal of the American Society for Bone and Mineral Research.
[64] B. Sarnat. Effects and noneffects of personal environmental experimentation on postnatal craniofacial growth. , 2001, The Journal of craniofacial surgery.
[65] J. C. Copray,et al. An in-vitro system for studying the effect of variable compressive forces on the mandibular condylar cartilage of the rat. , 1985, Archives of oral biology.
[66] S. Herring,et al. Temporomandibular joint in miniature pigs: Anatomy, cell replication, and relation to loading , 2002, The Anatomical record.
[67] J. Mao,et al. Bone Strain Patterns of the Zygomatic Complex in Response to Simulated Orthopedic Forces , 2002, Journal of dental research.
[68] K. Ohya,et al. In situ hybridisation study of type I, II, X collagens and aggrecan mRNAs in the developing condylar cartilage of fetal mouse mandible , 1999, Journal of anatomy.
[69] S. Iseki,et al. Tissue origins and interactions in the mammalian skull vault. , 2002, Developmental biology.
[70] P. Billings,et al. MMP‐13 is induced during chondrocyte hypertrophy , 2000, Journal of cellular biochemistry.
[71] Peter G. Gillespie,et al. Molecular basis of mechanosensory transduction , 2001, Nature.
[72] D. Carlson. Biological rationale for early treatment of dentofacial deformities. , 2002, American journal of orthodontics and dentofacial orthopedics : official publication of the American Association of Orthodontists, its constituent societies, and the American Board of Orthodontics.
[73] M. Sharawy,et al. An immunohistochemical study of collagen types III, VI and IX in rabbit craniomandibular joint tissues following surgical induction of anterior disk displacement. , 1996, Journal of oral pathology & medicine : official publication of the International Association of Oral Pathologists and the American Academy of Oral Pathology.
[74] A. Grodzinsky,et al. Cartilage tissue remodeling in response to mechanical forces. , 2000, Annual review of biomedical engineering.
[75] Rupal V Patel,et al. Regional structural and viscoelastic properties of fibrocartilage upon dynamic nanoindentation of the articular condyle. , 2001, Journal of structural biology.
[76] S. Shibata,et al. Parathyroid Hormone–Related Protein Regulates Proliferation of Condylar Hypertrophic Chondrocytes , 1999, Journal of bone and mineral research : the official journal of the American Society for Bone and Mineral Research.
[77] Mahlon D. Johnson,et al. Expression of a Truncated, Kinase-Defective TGF-β Type II Receptor in Mouse Skeletal Tissue Promotes Terminal Chondrocyte Differentiation and Osteoarthritis , 1997, The Journal of cell biology.
[78] E. Livne,et al. Comparison of In Vitro Response to Growth Hormone by Chondrocytes from Mandibular Condyle Cartilage of Young and Old Mice , 1997, Calcified Tissue International.
[79] Robert M Nerem,et al. Mechanical compression alters gene expression and extracellular matrix synthesis by chondrocytes cultured in collagen I gels. , 2002, Biomaterials.
[80] C. Turner,et al. Mechanotransduction and the functional response of bone to mechanical strain , 1995, Calcified Tissue International.
[81] X Wang,et al. Chondrocyte Proliferation of the Cranial Base Cartilage upon in vivo Mechanical Stresses , 2002, Journal of dental research.
[82] A. Petrovic. Control of postnatal growth of secondary cartilages of the mandible by mechanisms regulating occlusion. Cybernetic model. , 1974, Transactions. European Orthodontic Society.
[83] M. Sakuda,et al. Sequential progression of the differentiation program by bone morphogenetic protein-2 in chondrogenic cell line ATDC5. , 1998, Experimental cell research.
[84] H. Frost,et al. Skeletal structural adaptations to mechanical usage (SATMU): 3. The hyaline cartilage modeling problem , 1990, The Anatomical record.
[85] H. S. Duterloo,et al. Growth of the mandibular condylar cartilage of the rat in serum-free organ culture. , 1983, Archives of oral biology.
[86] L. Opperman,et al. Transforming growth factor-beta3 (Tgf-beta3) down-regulates Tgf-beta3 receptor type I (Tbetar-I) during rescue of cranial sutures from osseous obliteration. , 2002, Orthodontics & craniofacial research.
[87] M. Barembaum,et al. The chicken alpha 1 (XI) collagen gene is widely expressed in embryonic tissues. , 1992, The Journal of biological chemistry.
[88] T. Cate,et al. Oral histology: Development, structure, and function , 1980 .
[89] H. Gray. Gray's Anatomy , 1858 .
[90] A. Säämänen,et al. Collagen I and II mRNA distribution in the rat temporomandibular joint region during growth. , 2000, Journal of craniofacial genetics and developmental biology.
[91] M. Longaker,et al. Regional Differentiation of Cranial Suture‐Associated Dura Mater In Vivo and In Vitro: Implications for Suture Fusion and Patency , 2000, Journal of bone and mineral research : the official journal of the American Society for Bone and Mineral Research.
[92] W Gaffield,et al. BMP and Ihh/PTHrP signaling interact to coordinate chondrocyte proliferation and differentiation. , 2001, Development.
[93] B. Olsen,et al. Bone development. , 2000, Annual review of cell and developmental biology.
[94] Margaret M. Smith,et al. Osteoarthritis, genetic and molecular mechanisms , 2004, Biogerontology.
[95] F. Shofer,et al. Headgear versus function regulator in the early treatment of Class II, division 1 malocclusion: a randomized clinical trial. , 1998, American journal of orthodontics and dentofacial orthopedics : official publication of the American Association of Orthodontists, its constituent societies, and the American Board of Orthodontics.
[96] T. Kuroda,et al. Differential responses to parathyroid hormone‐related protein (PTHrP) deficiency in the various craniofacial cartilages , 1999, The Anatomical record.
[97] T. Tanaka,et al. Cartilage proteoglycan core protein gene expression during limb cartilage differentiation. , 1986, Developmental biology.
[98] S. Mundlos,et al. Cbfa1, a Candidate Gene for Cleidocranial Dysplasia Syndrome, Is Essential for Osteoblast Differentiation and Bone Development , 1997, Cell.
[99] D. Church,et al. Mutations in the transmembrane domain of FGFR3 cause the most common genetic form of dwarfism, achondroplasia , 1994, Cell.
[100] O. Keith. Contemporary orthodontics , 2002, Morecambe Bay Medical Journal.
[101] J. Salzmann. A Synopsis of Craniofacial Growth , 1979 .
[102] T. Kantomaa,et al. Organ culture providing an articulating function for the temporomandibular joint. , 1988, Journal of anatomy.
[103] P. Leder,et al. Fibroblast Growth Factor Receptor 3 Is a Negative Regulator of Bone Growth , 1996, Cell.
[104] G. Laurence. [Biology of sutures]. , 1961, La Revue du praticien.
[105] A. Moursi,et al. Transforming growth factor‐beta 3(Tgf‐β3) in a collagen gel delays fusion of the rat posterior interfrontal suture in vivo , 2002, The Anatomical record.
[106] J. Ghafari,et al. Condylar cartilage response to continuous mandibular displacement in the rat. , 2009, The Angle orthodontist.
[107] N. Amizuka,et al. Parathyroid hormone-related peptide-depleted mice show abnormal epiphyseal cartilage development and altered endochondral bone formation , 1994, The Journal of cell biology.
[108] S. Mundlos,et al. Developmental expression of human cartilage matrix protein , 1994, Developmental dynamics : an official publication of the American Association of Anatomists.
[109] K. Koski,et al. Growth potential of intracerebrally transplanted cranial base synchondroses in the rat. , 1970, Archives of oral biology.
[110] Y. Kim,et al. Differential Expression Patterns of Runx2 Isoforms in Cranial Suture Morphogenesis , 2001, Journal of bone and mineral research : the official journal of the American Society for Bone and Mineral Research.
[111] A. Moursi,et al. Fibroblast growth factor 2 induces increased calvarial osteoblast proliferation and cranial suture fusion. , 2002, The Cleft palate-craniofacial journal : official publication of the American Cleft Palate-Craniofacial Association.
[112] A. Wilkie,et al. Genetics of craniofacial development and malformation , 2001, Nature Reviews Genetics.
[113] H. Shirai,et al. Effects of ovariectomy and/or dietary calcium deficiency on bone dynamics in the rat hard palate, mandible and proximal tibia. , 2001, Archives of oral biology.
[114] S. Marks,et al. Endochondral bone formation in toothless (osteopetrotic) rats: failures of chondrocyte patterning and type X collagen expression. , 2000, The International journal of developmental biology.
[115] Lei Zhou,et al. CBFA1 mutation analysis and functional correlation with phenotypic variability in cleidocranial dysplasia. , 1999, Human molecular genetics.
[116] B. Zimmermann,et al. Morphology of the development of the sagittal suture of mice , 1998, Anatomy and Embryology.
[117] Makoto Sato,et al. Targeted Disruption of Cbfa1 Results in a Complete Lack of Bone Formation owing to Maturational Arrest of Osteoblasts , 1997, Cell.
[118] B. Lanske,et al. Parathyroid hormone-related peptide delays terminal differentiation of chondrocytes during endochondral bone development. , 1996, Endocrinology.
[119] P. LuValle,et al. A BMP responsive transcriptional region in the chicken type X collagen gene. , 1998, Journal of bone and mineral research : the official journal of the American Society for Bone and Mineral Research.
[120] H. Mitani,et al. Effects of expansive force on the differentiation of midpalatal suture cartilage in rats. , 1996, Bone.
[121] P. Chambon,et al. Axial skeletal patterning in mice lacking all paralogous group 8 Hox genes. , 2001, Development.
[122] F. Luyten,et al. Osteogenic protein-1 promotes growth and maturation of chick sternal chondrocytes in serum-free cultures. , 1995, Journal of cell science.
[123] M. Drezner,et al. Bone histomorphometry: Standardization of nomenclature, symbols, and units: Report of the asbmr histomorphometry nomenclature committee , 1987, Journal of bone and mineral research : the official journal of the American Society for Bone and Mineral Research.
[124] G. Stein,et al. Relationship of cell growth to the regulation of tissue‐specific gene expression during osteoblast differentiation , 1990, FASEB journal : official publication of the Federation of American Societies for Experimental Biology.
[125] M. Alini,et al. Selective assembly and remodelling of collagens II and IX associated with expression of the chondrocyte hypertrophic phenotype , 2000, Developmental dynamics : an official publication of the American Association of Anatomists.
[126] G. Segre,et al. Fibroblast Growth Factor Inhibits Chondrocytic Growth through Induction of p21 and Subsequent Inactivation of Cyclin E-Cdk2* , 2001, The Journal of Biological Chemistry.
[127] Xin Wang,et al. Accelerated Chondrogenesis of the Rabbit Cranial Base Growth Plate by Oscillatory Mechanical Stimuli , 2002, Journal of bone and mineral research : the official journal of the American Society for Bone and Mineral Research.
[128] R. Carvalho,et al. Glycosaminoglycan synthesis in the rat articular disk in response to mechanical stress. , 1995, American journal of orthodontics and dentofacial orthopedics : official publication of the American Association of Orthodontists, its constituent societies, and the American Board of Orthodontics.
[129] A. Copp,et al. Blocking endogenous FGF-2 activity prevents cranial osteogenesis. , 2002, Developmental biology.
[130] L. Baume. Differential response of condylar, epiphyseal, synchondrotic, and articular cartilages of the rat to varying levels of vitamin A. Its impact oncurrent growth concepts. , 1970, American journal of orthodontics.
[131] S. Harris,et al. Bone morphogenetic protein receptor signaling is necessary for normal murine postnatal bone formation , 2002, The Journal of cell biology.
[132] Rik Huiskes,et al. Why mechanobiology? A survey article. , 2002, Journal of biomechanics.
[133] S. Pruzansky,et al. Craniosynostosis : diagnosis, evaluation, and management , 1986 .
[134] H. Luder. Age changes in the articular tissue of human mandibular condyles from adolescence to old age: A semiquantitative light microscopic study , 1998, The Anatomical record.
[135] D. Rice,et al. Apoptosis in murine calvarial bone and suture development. , 1999, European journal of oral sciences.
[136] J. Mao,et al. Suture Growth Modulated by the Oscillatory Component of Micromechanical Strain , 2003, Journal of bone and mineral research : the official journal of the American Society for Bone and Mineral Research.
[137] T. Vahlberg,et al. Growth Hormone and Insulin-like Growth Factor I Receptors in the Temporomandibular Joint of the Rat , 2001, Journal of dental research.
[138] D. Rice,et al. Integration of FGF and TWIST in calvarial bone and suture development. , 2000, Development.
[139] M. Goldring,et al. Alternatively spliced type II procollagen mRNAs define distinct populations of cells during vertebral development: differential expression of the amino-propeptide , 1991, The Journal of cell biology.
[140] S. Bent,et al. Chondrocytic differentiation of mesenchymal stem cells sequentially exposed to transforming growth factor‐β1 in monolayer and insulin‐like growth factor‐I in a three‐dimensional matrix , 2001, Journal of orthopaedic research : official publication of the Orthopaedic Research Society.
[141] J. Ghafaria,et al. Headgear versus function regulator in the early treatment of Class II, Division 1 malocclusion: A randomized clinical trial , 1998 .
[142] V. Mow,et al. The mechanical environment of the chondrocyte: a biphasic finite element model of cell-matrix interactions in articular cartilage. , 2000, Journal of biomechanics.
[143] W. Proffit,et al. Benefit of early Class II treatment: progress report of a two-phase randomized clinical trial. , 1998, American journal of orthodontics and dentofacial orthopedics : official publication of the American Association of Orthodontists, its constituent societies, and the American Board of Orthodontics.
[144] P. Gakunga,et al. Transforming growth factor‐β2 and TGF‐β3 regulate fetal rat cranial suture morphogenesis by regulating rates of cell proliferation and apoptosis , 2000 .
[145] S. Lozanoff,et al. Spatial and temporal distribution of cellular proliferation in the cranial base of normal and midfacially retrusive mice , 1999, Clinical anatomy.
[146] J. Mao,et al. Strain induced osteogenesis of the craniofacial suture upon controlled delivery of low-frequency cyclic forces. , 2003, Frontiers in bioscience : a journal and virtual library.
[147] J. McNamara,et al. Quantitative analysis of temporomandibular joint adaptations to protrusive function. , 1979, American journal of orthodontics.
[148] S. Herring,et al. Effects of intraoral splint wear on proteoglycans in the temporomandibular joint disc. , 2000, Archives of biochemistry and biophysics.
[149] Galanis,et al. Transforming growth factor‐β3 (Tgf‐β3) down‐regulates Tgf‐β receptor type I (Tβr‐I) during rescue of cranial sutures from osseous obliteration , 2002 .
[150] C. Rubin,et al. Biology of bone and how it orchestrates the form and function of the skeleton , 2001, European Spine Journal.
[151] D. Fischer,et al. Specific properties of the extracellular chondroitin sulphate proteoglycans in the mandibular condylar growth centre in pigs. , 1997, Archives of oral biology.
[152] M. Longaker,et al. Human NELL‐1 Expressed in Unilateral Coronal Synostosis , 1999, Journal of bone and mineral research : the official journal of the American Society for Bone and Mineral Research.
[153] Z. Davidovitch,et al. Immunohistochemical localization and distribution of cyclic nucleotides in the rat mandibular condyle in response to an induced occlusal change. , 1980, Archives of oral biology.
[154] Yue Zhang,et al. Indian hedgehog Is an Essential Component of Mechanotransduction Complex to Stimulate Chondrocyte Proliferation* , 2001, The Journal of Biological Chemistry.
[155] H. Mitani,et al. Diurnal Variation in the Response of the Mandible to Orthopedic Force , 2002, Journal of dental research.
[156] D. Carlson,et al. Regulation of cell proliferation in rat mandibular condylar cartilage in explant culture by insulin-like growth factor-1 and fibroblast growth factor-2. , 2002, Archives of oral biology.
[157] P. Gakunga,et al. Transforming growth factor-beta 2 and TGF-beta 3 regulate fetal rat cranial suture morphogenesis by regulating rates of cell proliferation and apoptosis. , 2000, Developmental dynamics : an official publication of the American Association of Anatomists.
[158] D. Mccune. Bone and Bones. Fundamentals of Bone Biology , 1948 .
[159] N. Berrill,et al. Growth, development, and pattern , 1961 .
[160] D'arcy W. Thompson,et al. On Growth and Form , 1917, Nature.