Age as compromising factor for implant insertion.
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Biomedical subjects
Publications and source records attributed to Heidi Opdebeeck.
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In a previous study in the rabbit, the authors defined the macroscopic growth alterations after unilateral partial facial paralysis. Dry skull measurements revealed a reduced premaxillary, maxillary, mandibular, and anterior corpus length with a simultaneous increase in mandibular ramal height on the paralyzed side. The authors hypothesize that these mandibular growth alterations are, among others, caused by alterations in condylar growth activity and that an altered occlusal relationship may be involved in the adaptive condylar growth response after facial paralysis.A total of 84 New Zealand White rabbits were used for this study. The animals were randomly assigned to either a control group that was not operated on (n = 28), a group that underwent a sham-operation (n = 28), or an experimental group (n = 28). In the sham-operation group, the facial nerve was dissected as in the experimental group but was left intact. In the experimental group, a left-side partial facial paralysis involving the midfacial muscles was induced by an operation at the age of 12 days. After different follow-up time intervals of 3.5, 7, 14, 21, 28, 42, and 56 days, four control, four sham-operation, and four experimental animals (all randomly selected) were killed for histomorphometric measurements of the left control and sham condyles and the left-side and right-side experimental condyles. No significant differences between the control and sham-operation groups were found. The other results revealed that shortly after the paralysis in the experimental group, as compared with the controls, a decrease in condylar growth activity was seen before a catch-up increase in activity, as expressed by the time-sequenced decrease and increase in the height of the functional and hypertrophic chondroblast layer. The response on the right side was analogous, though less intense. It is suggested that the mandibular ramal growth alterations might be the result of a chain of adaptations involving the lateral pterygoid muscle and the condylar growth activity. The unilaterally restricted length increment of the maxillary snout, as a result of the loss of tensile forces caused by paralysis of the midfacial musculature, necessitated an adaptation in the position of the mandible to maintain a normal occlusal relationship. Subsequently, the function of muscles involved or influenced by an altered mandibular position, such as the lateral pterygoid muscle, were changed. These altered muscle activities induced condylar growth adaptations, which in turn explained the alterations in mandibular ramal growth.
PURPOSE: To investigate the optimization of multidisciplinary and interdisciplinary oral health care through the introduction of pathways. MATERIALS AND METHODS: A prospective randomized clinical trial was carried out in a tertiary referral academic institution. Ninety-one patients admitted for multidisciplinary oral health care from January 1, 2001, to March 31, 2003, were randomized to the test group (n = 50) or to the control group (n = 41). Pathways were implemented by means of the Medical Patient Management program, a computerized planning and coordination system specifically developed for a population with multidisciplinary oral rehabilitation needs. The efficiency of pathways in interdisciplinary oral health care was assessed. RESULTS: Statistically significant differences between test and control groups were found for variables regarding the process of care, such as "number of planned versus actual disciplines," "length of planned versus actual treatment," and "average length of a treatment session." For variables regarding patient satisfaction, significant differences between test and control groups were found for questions regarding patient involvement with the treatment and patient satisfaction with the outcome of multidisciplinary treatment. Regarding practitioner satisfaction, the results of the questionnaire indicate that implementation of pathways into everyday clinical practice is desired but remains difficult. CONCLUSION: The findings of this study show that the implementation of pathways in multidisciplinary oral health care improved some aspects of the process of care and increased patient satisfaction. The predictive capability of the Medical Patient Management program in managing oral health care has been demonstrated.
The replacement of teeth lost by children because of trauma can be an important indication for early implant therapy. Osseointegrated dental implants, like ankylosed teeth, alter position as growth-related changes occur within the jawbones (displacement, remodeling, mesial drift). Facial growth of the child and even of the adolescent, as well as the continuous eruption of the adjacent anterior teeth, create significant risk of a less favorable esthetic and/or functional outcome. For patients with a normal facial profile, the placement of an implant should be postponed until growth is complete. For patients with a short or long face type, further growth, especially the continuous eruption of adjacent teeth, creates a serious risk even after the age of 20 years, as illustrated by some recent clinical studies. This review aims to explain these phenomena and provides some recommendations for implant placement.