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1.
J Oral Implantol ; 2022 Dec 06.
Article in English | MEDLINE | ID: mdl-36473180

ABSTRACT

This case report showed the proof-of-concept of a guided free gingival graft around a dental implant. A 65-year-old male presented to replace his 30 and 31. Once the osseointegration of the 2 implants placed by guided surgery has been achieved, a free gingival graft was indicated. The surgical planning of this graft was performed using the Cone Beam Computed Tomography and archs digital scanning already used for implant placement. The greater palatine foramen and gutter were radiologically located to protect their arterial content. Two surgical guides were designed, one for the palatal donor site and one for the recipient site. The first one will serve both as an incision guide and as a post-operative protective plate. The procedure was free of adverse events. At the 1-year recall, the average gain in keratinized tissue width amounted 2.5 mm. This guided surgery could be used in a patient with insufficient amount of keratinized tissue around a posterior implant. For the first time, it makes it possible to anticipate, accelerate and secure the intervention, to improve the practitioner's comfort and potentially the outcomes of free gingival grafts. Further research and clinical are needed to validate this protocol and to assess its long-term impact on peri-implant health.

2.
Eur J Dent ; 10(4): 579-582, 2016.
Article in English | MEDLINE | ID: mdl-28042279

ABSTRACT

Dental invagination (DI) is a tooth malformation that usually affects permanent teeth. Its precise etiology is still controversial and represents a clinical challenge as it can favor the development of carious lesion or periodontal inflammation. This paper presents a case of a 23-year-old Caucasian male, where an atypical buccal DI could not be completely diagnosed in the dens invaginatus category. Furthermore, other differential diagnoses could not be confirmed. The dental malformation was seen on a permanent maxillary first incisor and was associated with periodontal inflammation and attachment loss. Successful clinical management of this case consisted of surgical restorative treatment and regular follow-up, accompanied by thorough oral hygiene procedures.

3.
J Craniomaxillofac Surg ; 43(9): 1829-36, 2015 Nov.
Article in English | MEDLINE | ID: mdl-26433771

ABSTRACT

OBJECTIVES: To develop an animal model of mandibular osteoradionecrosis (ORN) using a high-energy radiation source (as used in human therapeutics) and to assess the role of tooth extraction on ORN development. MATERIALS AND METHODS (STUDY DESIGN): Ten animals were irradiated with a single 35- or 50-Gy dose. Three weeks later, the second left mandibular molar was extracted from three animals in each group. Nine weeks after irradiation, the animals were euthanized, with an injection of contrast agent in the bloodstream to highlight vascularization. Mandibles were harvested and studied using micro-CT, histology, tartrate-resistant acid phosphatase activity and scanning electron microscopy. RESULTS: This study demonstrates that a single 50-Gy dose associated with molar extraction is necessary for ORN development. In these conditions, absence of healing of the mucosa and bone, dental effects, fibrosis, an increase in osteoclast activity and a decrease in vascularization were observed. We also determined that molar extraction increases the impact of the cellular effects of radiation. CONCLUSION: The mandibular ORN animal model was validated after 50-Gy irradiation and molar extraction. The results of this study therefore support an animal ORN model and tissue engineering strategies will now be developed to regenerate bone for patients with head and neck cancer.


Subject(s)
Mandible/pathology , Osteoradionecrosis/pathology , Radiation Injuries, Experimental/pathology , Tooth Extraction , Animals , Image Processing, Computer-Assisted , Mandible/blood supply , Mandible/diagnostic imaging , Mandible/physiopathology , Microscopy, Electron, Scanning , Osteoradionecrosis/diagnostic imaging , Osteoradionecrosis/physiopathology , Radiation Dosage , Radiation Injuries, Experimental/diagnostic imaging , Radiation Injuries, Experimental/physiopathology , Rats, Sprague-Dawley , Wound Healing/physiology , Wound Healing/radiation effects , X-Ray Microtomography
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