A short term evaluation of periodontal surgery.
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As reported in a previous paper (1) we have developed a new technique, Digital Image Ratio (DIR), which theoretically avoids some of the drawbacks of quantitative digital substraction radiography. DIR allows the direct computation and visualization of bone-mass-ratio changes. This second paper describes the use of DIR analysis to examine 20 sites in 8 patients undergoing regenerative periodontal therapy. Standardized reproducible radiographs of these 20 sites were taken before and 12 months after surgery. Ten experimental sites were treated with bone graft substitutes (natural coral or natural coral+collagen), and 10 control sites by debridement alone. None of the experimental sites had a density ratio below 1, where 1 indicates no change. The error was +/- 0.07 (0.93-1.07). The experimental sites showed an 18% mean increase in bone density (1.18), which increased to 23% (1.23) for sites filled with natural coral alone. All the control sites had values close to 1.00 (1.00 +/- 0.07) except for 3 sites, which showed a 9-15% loss of bone density. It is thus possible to compare and quantify the changes in experimental and control sites in the same patient using the percentage gain or loss of bone density. This demonstrates that DIR is suitable for clinical applications, and can be used in clinical analysis when bone changes are expected.
A biocompatible microporous composite of PMMA (poly-methyl-methacrylate), PHEMA (poly-hydroxy-ethyl-methacrylate) and calcium hydroxide bone replacement graft material (Bioplant HTR Synthetic Bone) was evaluated in 16 maxillary molar and 10 mandibular molar Grade II furcations in 13 patients. Following initial preparation, full thickness flaps were raised to gain access to the furcations; mechanical hand and ultrasonic root and defect debridement and chemical tetracycline root preparation were performed; furcation and adjacent osseous defects in each patient were grafted with HTR Synthetic Bone; and the host flaps replaced or slightly coronally positioned. Weekly, then monthly deplaquing was performed until surgical re-entry at 6-12 months. Patients were then followed on approximate 3-month recalls for > or = 6 yr. Evaluation of the primary clinical outcome of furcation grade change showed that in the maxilla 5/16 furcations were clinically closed, 9/16 were Grade I, and 2/16 remained Grade II; while in the mandible 3/10 were clinically closed, 5/10 were Grade I, and 2/10 remained Grade II. Other significant clinical changes included decrease in mean horizontal furcation probing attachment level from 4.4 mm at surgery to 2.2 mm at re-entry to 2.0 mm at 6 yr, decrease in probing pocket depth from 5.4 mm at surgery to 3.0 mm at re-entry to 3.2 mm at 6 yr, and improvement in vertical clinical probing attachment level from 5.4 mm at surgery to 4.2 mm at re-entry to 4.1 mm at 6 yr (all p < 0.05 from surgery to re-entry and surgery to 6 yr, n.s. from re-entry to 6 yr via ANOVA). These favorable results with HTR polymer are similar to several reports with other graft materials and with GTR barriers, and suggest that HTR polymer may have a beneficial effect in the clinical management of Grade II molar furcations.
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PURPOSE: The purpose of this study was to measure changes in buccal and proximal tissue volumes after local bone grafting and single-implant treatment. MATERIALS AND METHODS: Ten patients were provided with buccal bone grafts 6 months prior to implant treatment in central upper incisor regions. Following a healing time of 6 months, abutments and single-implant crowns were installed and followed up for 2 years. Clinical photographs and impressions were taken prior to the surgical intervention as well as after crown placement and at first and second annual checkups. The photographs and study models were analyzed with regard to papilla regeneration and changes in buccal crest volume during the study period by means of a clinical papilla index and optical scanning of study models. RESULTS: All bone grafts healed without problems. A significant reduction of the buccal crest volume (-50%, p <.01) was observed in the grafted area before abutment connection. However, a significant increase of tissue volume (+100%, p <.05) was noticed at the subsequent crown placement, followed by a second but slow reduction of the volume during the following 2 years of function. The interdental papillae increased significantly (p <.05) in volume during the first year, almost completely filling up the embrasure areas after 2 years. CONCLUSIONS: It may be concluded that local bone grafting seems to be a valuable protocol to create sufficient bone volume for implant placement. However, significant resorption of the graft may be present, which reduces the impact of grafting on the esthetic outcome. Instead, placement of the abutment cylinder and the crown seems to play a more important role for reestablishing the tissue volume at the implant-supported single crowns.
A composite of HA particulate and calcium sulfate hemihydrate has been developed. When this dry material is mixed with either sterile saline or water, the resulting mixture begins to gel. While in the gel or dough state, the composite can be manually inserted or injected under pressure into a bone defect where it sets in situ. The calcium sulfate acts as a binder to hold the HA particles in place. The subsequent resorption of the calcium sulfate leaves controlled porosity for bone ingrowth and attachment to the nonresorbable HA particulate. The combination of calcium sulfate and HA results in a composite with handling properties superior to those of HA alone. Calcium sulfate has a long history of medical use as an implant material. The biocompatibility of the material has been clearly established. The combination of HA and calcium sulfate is likewise extremely compatible as demonstrated in the present studies. Bone ingrowth concomitant with resorption occurs rapidly with efficient conduction of bone from particle to particle. Based on the experiments presented herein, the composite of HA and calcium sulfate may be a useful alternative or adjunct to autogenous bone grafting. Many questions, however, remain regarding long-term tissue response and bone remodeling as well as the efficacy of this material relative to bone grafting.
The problems to be solved are those largely caused by prolonged wearing of old, inadequate dentures where faulty occlusion, ill-fitting bases, poor denture hygiene, parafunctional habits combine to produce denture stomatitis and papillary hyperplasia. A programme is set out to deal with these problems and to adjust abnormal frenum and muscle attachment.
1. For the severely atrophic mandible surgery cannot be considered as a magical panacea. 2. Retention of teeth or tooth roots is important as we are unable to predict the degree of mandibular bone resorption relating to the innate vascular pattern. 3. More emphasis should be given to mylohyoid reduction as described in this paper. 4. A gain in stability by surgery should not be at the expense of retention. 5. Mucosal grafts are more satisfactory than skin grafts. 6. Bone graft augmentation in the future must be considered with great caution. 7. When removing denture hyperplasia which involves the sulcus, every effort must be made to preserve viable mucosa in order to reconstitute a resilient border seal.
The use of implants has become a routine part of restorative dental treatment. The placement of implants requires a sufficient quantity of bone in which to place implant fixtures. Where such bone does not exist, a number of methods have been used to augment the affected area of the alveolar ridge. This case report describes the use of the relatively new distraction osteogenesis procedure to increase bone volume in a patient who required post-traumatic restoration of several missing teeth, as well as comprehensive orthodontic and orthognathic surgical treatment.
BACKGROUND: The contemporary treatment of cleft lip and palate involves a sequence of surgical procedures and orthodontic management. Alveolar bone grafting (ABG) is usually undertaken after orthodontic expansion of the maxillary segments between the ages of eight and 12 years. Two of the important goals of alveolar bone grafting are the provision of bony support for the eruption of the canine and the closure of residual oro-nasal fistulae. The purpose of this study was to retrospectively evaluate the root development and eruption of the canine following ABG. METHODS: Group 1: radiographic and clinical records of a sample of 19 cleft patients who underwent alveolar bone grafting procedures, performed between 1996 and 1999 were reviewed. Group 2: a random sample of 15 cleft patients attending for routine dental review were clinically examined. The age of patient, degree of root development and eruption status of the canine, and presence of oronasal fistulae pre and post alveolar bone grafting were evaluated. RESULTS: Most cleft canines had continued root development and descended in the alveolus towards eruption following ABG. Four canine teeth (8 per cent) were impacted and required surgical exposure and orthodontic treatment following failure of eruption. Closure of anterior oro-nasal fistulae at the time of grafting was maintained post-operatively. CONCLUSIONS: This study demonstrated that canine root development and eruption continued satisfactorily through grafted alveolar clefts in most cases and closure of anterior oro-nasal fistulae was achieved in all cases.
Prevention and treatment of alveolar ridge deformities aim at preserving and/or reconstructing soft and hard tissues of the edentulous ridge. Different surgical techniques may be used to prevent ridge collapse before tooth extraction or to reconstruct lost ridge anatomy before tooth replacement. In cases of mild or moderate ridge defects, soft tissue augmentation is generally sufficient to repair the deformity. On the other hand, hard tissue augmentation should be selected primarily when implant therapy is scheduled. In cases of severe ridge defects, a staged or a combined approach may be appropriate. This article reviews the various approaches for the prevention and treatment of ridge deformities.
Cost-effectiveness analysis was used to evaluate alternative methods of periodontal disease control. The alternatives considered included non-surgical and surgical procedures as well as the use of antimicrobial agents. Data on costs were obtained from American Dental Association publications of average charges for periodontal services. The concept of quality-adjusted tooth-years (QATYs) was developed to provide an outcome measure which could be compared across treatments. The conclusions of this analysis are as follows: (1) Conservative non-surgical treatments for periodontal disease control not only have costs lower than surgical alternatives, as would be expected, but also maximize expected quality-adjusted tooth-years over a wide range of estimates; (2) antimicrobial therapy used as an adjunct to non-surgical treatment is likely to be both effective and cost-effective; and (3) quality of tooth-years is a critical consideration in the determination of outcome of periodontal treatment. For example, when tooth-years are not adjusted for quality, differences between treatments are diminished, and surgical treatment becomes as good as or better than more conservative treatments for some levels of disease severity.
A 2-mm non-healing bony defect was prepared in the premaxilla of male Wistar rats weighing about 180 g as a simulation of an alveolar cleft, for determination of whether a pulsing electromagnetic field (PEMF) could promote regeneration of bone induced by demineralized bone matrix (DBM). The defect was either treated with 7 mg DBM or was left as a non-grafted control. The rats were exposed to a PEMF with a frequency of 100 Hz, a 10-ms-wide burst with 100 microseconds-wide quasi-rectangular pulses, repeating at 15 Hz, and magnetic field strength of 1.5-1.8 G. Alkaline phosphatase activity increased significantly from day 7 in the DBM-graft-plus-PEMF group and from day 10 in the DBM-graft group, reaching a maximum on day 14. A greater-than-two-fold rise in alkaline phosphatase activity and a three-fold rise in the amount of 45Ca incorporation in the DBM-graft-plus-PEMF group were attained compared with those of the DBM-graft group. The DBM-graft-plus-PEMF group produced more bone with almost complete osseous bridging in the defect sites than did the group treated with DBM only on day 35. The findings indicate that PEMF had an enhancing effect on the bone-inductive properties of the DBM through the stimulation of osteoblast differentiation induced by DBM.
This case report describes the use synthetic bone graft particulate and 24% EDTA gel to treat an infrabony defect adjacent to the mandibular right first molar tooth in an American Eskimo dog. Postoperative examination 33-months following surgery showed osseous integration at the infrabony defect and restoration of the periodontal ligament space with a small refractory periodontal pocket.
The introduction of mixed dentition bone grafting of alveolar clefts means that the alveolar process can be fully restored, permitting adjacent teeth to migrate or be orthodontically moved into the grafted bone. Thus a complete dental arch can be obtained without prosthodontics in the great majority of patients. In addition, oral-nasal fistulae are closed, mucosal recesses eliminated (facilitating oral hygiene) and the long-term periodontal health of the teeth adjacent to the former cleft is improved. Alveolar bone grafting with subsequent orthodontic treatment, together with advances in dental materials, have contributed substantially to the care of patients with alveolar clefts, reducing the need for prosthodontic procedures and allowing completion of the dental treatment at an earlier age.