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Treating the open bite.

Tongue thrust is involved in nearly all open bites. An open bite can be created by tongue thrust, tongue posture or mandibular posture. Tongue is an unusual muscle in that its contraction allows it to assume many shapes; its influence in the swallow can create an open bite in the area dictated by the contraction, thrust or rest position. Once space has been created between the upper and lower teeth by the tongue it continues to enter the space created, consequently enlarging the space. Skeletal open bites do not occur in patients whose masseter muscles are active during the swallow (an open bite can develop in these individuals due to habit or during orthodontic therapy). In these individuals the masseters fully contract during the swallow. The weaker the masseter muscles, the more likely an open bite will either be present or may develop during orthodontic treatment. Orthodontic movement will always result in occlusal interferences at some point in treatment. Occlusal interferences during orthodontic treatment make it difficult for patients to find a comfortable biting position. At this point they do not fully contract--"squeeze"--the masseters during the swallow to avoid traumatizing the teeth. Once the masseter squeeze is reduced, the tongue must contribute more to the swallow than when the masseters were more actively involved. The tongue becomes the cushion for the dentition during the swallow. The tongue now positions itself between the teeth during the swallow and the open bite during orthodontic treatment is born. Once the open bite occurs it is best to treat it immediately as the open bite thus created will only worsen with time. If the patient was originally a counterclockwise grower (brachycephalic), it is easier to correct. A clockwise grower (dolichocephalic) is hardest to correct, but can be corrected with patience, perseverance, exercise and a properly constructed tongue thrust appliance. While it is true that some skeletal configurations (i.e. clockwise growers, dolichocephalic facial types) lend themselves to the development of an open bite, the skeletal configuration itself seldom produces an open bite. The tongue is the main progenitor of open bites and it is also responsible for perpetuating the open bite. Dolichocephalic facial types lend themselves to open bite development as any orthodontic treatment which either distalizes molars or allows molars to extrude will tend to wedge the mandible and dentition open. (In this type of patient the masseter muscles develop insufficient force on closure to intrude the molars.) Once the bite opens, the tongue now enters the picture in order to complete the swallow. The open bite immediately worsens. The open bite thus created may require several months to correct. In the clockwise growth patient it is imperative that all precautions be taken during treatment to counteract open bite development. It is also imperative that an open bite, once detected, be treated immediately as the longer it persists the more difficult it becomes to treat. If left untreated, it becomes a habit and the more engrained a habit the more effort needed to change it.

Adolescent↗

Craniofacial growth of fetal Macaca nemestrina: a cephalometric roentgenographic study.

The prenatal growth of the macaque craniofacial skeleton is described using lateral radiographs of 82 fetal and 25 neonatal Macaca nemestrina whose known gestational ages range from 50 to 186 days. The ossification sequences of the craniofacial bones resembles that in the human fetus. During gestation, the macaque neurocranium loses its round, globular shape, becoming flattened and elongated in an anteroposterior direction. In contrast, the morphologic pattern of the face is established early in fetal life, and little change takes place during the remaining prenatal period. The macaque craniofacial dimensions develop along the general skeletal growth pattern, unlike the human craniofacial dimensions, which follow an intermediate pattern between the neural and general skeletal patterns. However, despite minor differences, the macaque and human fetal faces follow the same basic patterns of growth.

Animals↗

Globulomaxillary cyst revisited.

Classically, the globulomaxillary cyst was considered to be an inclusion or developmental cyst that arises from entrapped nonodontogenic epithelium in the globulomaxillary suture. Subsequently Christ disputed the existence and histogenesis of this lesion stating that the evidence indicated that facial processes per se did not exist. The development of the anterior maxilla was attributed to the merging of growth centers rather than fusion of facial processes, and hence ectodermal entrapment was ruled out. Recent embryologic studies, however, have demonstrated that Christ's view of facial development was incorrect. Fusion of facial processes does occur, and epithelium is entrapped in areas that later will lie between the maxillary lateral incisors and canines. This review argues that embryologically and histopathologically the globulomaxillary cyst should again be considered as an identifiable clinicopathologic entity.

Epithelium↗

Cleft palate repair: art and issues.

Caring for the child with cleft palate requires a multidisciplinary approach that begins with evaluation for other possible congenital anomalies, decisions about timing of repair, and choice of techniques. Postoperative follow-up similarly requires a team approach and should include an otolaryngologist, an orthodontist, and a speech therapist. The art of cleft palate repair has enjoyed a decade rich in new developments. New techniques have been developed, and standard techniques have been refined. Most importantly, the need for prospective, randomized trials to objectively compare surgical techniques has been recognized. Initiation and completion of these trials will improve outcomes for patients with cleft palate repairs.

Child, Preschool↗

The use of tensor analysis to investigate facial changes in treated class II division 1 malocclusions.

This retrospective cephalometric study examined the facial changes brought about by treatment in 62 Class II division 1 children, using tensor analysis. Thirty-two children were treated with Fränkel appliances, whilst the remaining thirty received premolar extractions, headgear, and conventional Edgewise mechanics. Each child was matched for age and sex with an untreated individual in whom the occlusion was deemed satisfactory and the treatment changes were compared with those expected during normal development. Results indicated that vertical facial development predominated in both treated groups: this exceeded the increase expected in an untreated population . The Fränkel group exhibited the greater gain in lower face height, with changes confined almost entirely to the mandible. Effective mandibular position improved but there was no increase in body length. The incisors were more favourably positioned within the face with similar improvements in the soft tissues. Thus, although facial balance was better following a non-extraction Fränkel approach, control of the vertical dimension was inadequate. The fixed appliance group exhibited a smaller increase in lower facial height and no favourable mandibular development: maxillary retraction was the most striking skeletal alteration. By removing the traditional, fixed, superimpositional framework of the cranial base, tensor analysis highlights vertical and mandibular changes not easily detected by conventional cephalometry.

Adolescent↗

The nasal septum in relation to the development of the nasomaxillary complex: a study in identical twins.

The influence of the nasal septum and respiration, evaluated by the total nasal resistance (TR) on the development of the nasomaxillary complex, was studied in 42 identical twins. An understanding of this influence is important for a determination of whether surgery involving the nose should be performed in children. Comparison within and between twins with different septal deformities indicated that the cartilaginous nasal septum influences the development of the nose and the anteroposterior dimensions of the maxilla. Anterior septal deformities resulted in underdeveloped cartilaginous noses and a shorter anteroposterior dimension for the maxilla. No relation was found with regard to posterior septal deformities, which may be considered as part of the development of the midface. Vertical dimensions of the face were related to TR. Increased values of TR were significantly related to a shorter maxillary height. This may not express a causal relationship but rather genetically determined shorter facial dimensions.

Adolescent↗

[Clinical feature of odontogenic maxillary sinusitis--symptomatology and the grade in development of the maxillary sinus in cases of dental maxillary sinusitis].

Odontogenic maxillary sinusitis may occur by draining of an apical dental root abscess into the maxillary sinus. It has been reported that the disease is usually frequent in cases aged of the second and third decades. In most of them, either the first or second molar tooth is assumed to be the origin of the disease. As clinical characteristic symptoms, it is mentioned that an acute unilateral sinusitis appears since the onset and the patient complains a fetid purulent nasal discharge from an early stage. The symptom and its clinical time course in 43 cases with dental maxillary sinusitis, who had been treated by surgical procedures in ENT Clinic in Kitasato University Hospital during past 14 years from 1972 to 1985, were studied retrospectively. The size of the affected maxillary sinus in each case of the disease was measured from the X-ray films. An influence of development of the maxillary sinus to the occurrence of dental sinusitis was discussed by comparing the sizes of the maxillary sinuses in both the group of the disease and the group of simple unilateral maxillary sinusitis.

Adolescent↗

FGF signalling in craniofacial development and developmental disorders.

The Fgf signalling pathway is highly conserved in evolution and plays crucial roles in development. In the craniofacial region, it is involved in almost all structure development from early patterning to growth regulation. In craniofacial skeletogenesis, the Fgf signal pathway plays important roles in suture and synchondrosis regulation. Mutations of FGF receptors relate to syndromatic and non-syndromatic craniosynostosis. The Fgf10/Fgfr2b signal loop is critical for palatogenesis and submandibular gland formation. Perturbation of the Fgf signal is a possible mechanism of palatal cleft. Fgf10 haploinsufficiency has been identified as the cause of autosomal dominant aplasia of lacrimal and salivary glands. The Fgf signal is also a key regulator of tooth formation: in the absence of Fgfr2b tooth development is arrested at the bud stage. Fgfr4 has recently been identified as the key signal mediator in myogenesis. In this review, these aspects are discussed in detail with a focus on the most recent advances.

Cleft Palate↗

Costochondral grafts replacing the mandibular condyle.

OBJECTIVE: The purpose of this study was to determine the success rate of costochondral bone grafts used to replace absent or nonfunctioning temporomandibular joints and the subsequent growth of these grafts when placed in young children. DESIGN: This is a retrospective study of all cases with adequate follow-up records that were treated at the Craniofacial Centre at Toronto's The Hospital for Sick Children from 1974-1986. A total of 55 patients were evaluated, of whom 13 were growing children. RESULTS: The findings suggest that there was increased success when surgery was performed at an early age. Poorer results were achieved when previous surgery had been performed or when pathology was present. Growth of the graft did not always equal the growth of the "normal" side, but in most cases a satisfactory symmetry was achieved. Several cases exhibited excessive overgrowth. CONCLUSIONS: Surgery at 4 to 5 years of age will alleviate the impact of a severe facial deformity on the child during the early school years, when self-esteem is fragile and patterns of social interactions are developing. Development of the dentition is better if the jaw relationship is close to normal at an early age. It would appear that early temporomandibular joint (TMJ) construction by costochondral grafting is, at present, the method of choice for severe hemifacial microsomia.

Adolescent↗

[Failures and limitations of orthodontics in general practice].

5 cases are presented to review the causes of orthodontic failure: ignorance of growth and development; limited technics often associated with overestimation of clinical capabilities. The concept of extracting 4 premolars followed by "what ever nature will do with it" or by a partial so-called "social treatment" (read with a minimum of appliances) can no longer be accepted.

Adolescent↗

[Vivisection studies on the effects of unilateral tooth extraction on growth of the skull amd masticatory musculature (author's transl)].

Following up on the 1st part of this cycle of publications, the 2nd Bulletin deals with investigations on upper and lower jaw growth in the Vietnamese belly pig after extracting all teeth as they appeared in the right half of the jaw. The results showed characteristic changes on the side of the extraction compared with the skull on the other side. They also show clearly that the effects of unilateral loss of teeth on the development of the bony part of the chewing apparatus are very local. This is made evident by analysis distances measured for the 3rd and 4th upper jaw widths and the 2nd vertical height of the bottom jaw. In contrast to other authors, we found no changes in the longitudinal and lateral development of the bottom jaw. Due to the slight degree of development of the alveolar process of the bottom jaw in the region of the 1st permanent molar, a significant reduction in surface area was found when removing the 2nd molars, which was performed usually at an early point, only in the group slaughtered after 12 months.

Animals↗

Developmental differences between singletons and twins in distributions of dental diameter asymmetries.

Craniofacial development and behavioral development differs between human twins and singletons in several ways which are related to symmetry development and detectable in adults. In most of those ways, twin zygosity groups do not differ. Here we use distributions of dental diameters, as a model subsystem of craniofacial development, to show that twins, of both zygosities and both sexes, are substantially more symmetrical than singletons. The observed differences are consistent with previous related observations, none of which can readily be explained by any consequence of twin gestation. They seem instead to represent peculiarities of developmental biology familially associated with twinning.

Adolescent↗

Relationship between chronic nasal obstruction and craniofacial growth: an experimental model.

The aim of this paper was to verify if the growth of the nasomaxillary complex can be influenced by a purely functional alteration such as nasal obstruction, which was induced experimentally in a genetically controlled animal model. Sixty albino rats were employed. Twenty of them had the right nostril occluded by a synthetic resin; another twenty had both nostrils occluded; the other 20 were taken as control group. When the growth was completed, the rats were sacrificed and cephalometric analysis was carried out. Both treated groups showed a statistically significant reduction in overall weight and height, in the vertical development of the nasomaxillary complex and in the skullbase longitudinal axis. After discussing the literature on the subject, the authors conclude that normal craniofacial growth in the rat must somehow depend on physiological nasal breathing, which should therefore be considered of crucial importance.

Animals↗

Changes in overbite and face height from 5 to 45 years of age in normal subjects.

The purpose of this study was to evaluate changes in overbite over a 40-year span, and to relate these changes to those occurring in vertical skeletal facial relationships. Lateral cephalograms of 20 males and 15 females from the Iowa Facial Growth Study were evaluated at ages 5, 10, 15, 25, and 45 years. Correlation coefficients were computed to determine the relationship between overbite and various skeletal parameters. Analysis of variance and Duncan's multiple-range test were used to compare various periods of growth. Statistical significance was predetermined at the 0.05 level of confidence. No significant correlations were found between the absolute values of overbite and the vertical skeletal parameters in either males or females. Incremental changes in overbite during four growth periods were compared with changes in various vertical parameters and only a few significant correlations were found. In males, the change in overbite was significantly correlated with changes in N-Ans'/N-Me and MP:SN during the 10-to-15 year growth period. In females, the change in overbite was significantly correlated with changes in N-Ans'/N-Me% during the 5-to-10-year period and also with change in Ar'-Go/S-Go% during the 15-to-25-year period. In general, changes in overbite with age are difficult to predict from the initial overbite in the deciduous or mixed dentitions. On the other hand, evaluation of individual curves shows that males who initially had the least amount of overbite maintained that trend during the later stages of development. Although overbite changes were significantly associated with changes in some vertical parameters, the associations were not of clinical significance for predictive purposes, and overbite changes are probably dependent on concurrent changes in the growth of the alveolar processes.

Adolescent↗

[Interceptive treatments for deformities in the vertical dimension].

Vertical dimension deformities result from an interference of multiple etiological factors acting during the growth period. They include maxillary and mandibular growth, dento-alveolar compensations as well as the functional environment. These deformities do not work in total isolation, but usually combine with others present in sagittal and transverse dimensions. Our intervention has to be three-dimensional and take into consideration the interaction of the three dimensions of space. It must address soft tissue components as well as the dento-alveolar and the skeletal ones of the maxilla and the mandible. Interceptive treatment of vertical dimension deformities rests on two pillars: the diagnosis and therapeutics. The diagnostic pillar aims to show how different structures relate to each other as well as with neighboring structures. These structures consist of the soft tissue components that will eventually control the smile, the dento-alveolar component that influences occlusal plane inclination and the skeletal component that determines the vertical facial type. Using this analysis, we classify our patients in categories that facilitate our later therapeutic intervention. The therapeutic pillar is constructed in an attempt to find solutions for the list of problems established during diagnosis and to encourage development of logical individualized thinking, independently of the orthodontic technique used. All of this underlines the importance of choosing an Individualized Orthodontic Therapy based upon concepts that respond to different individual clinical situations and work most effectively to achieve treatment objectives.

Cephalometry↗

Dental arch development in a set of triplets.

A set of male triplets, of whom the two youngest appear to be identical, has been followed and recorded on plaster casts from 1 month to young adulthood. Measurements of tooth size, arch breadth, length, and circumference, as well as arch relationship, were made at five stages of development. There was a general tendency for the identical pair to become more similar after puberty, and less like their dizygotic brother. Attention is drawn to the potential value of a longitudinal study on a sample of sets of similar sex triplets each containing two identical individuals.

Adolescent↗