1.Lateral alveolar ridge augmentation procedure using subperiosteal tunneling technique: a pilot study
Ashish KAKAR ; Kanupriya KAKAR ; Bappanadu H Sripathi RAO ; Annette LINDNER ; Heiner NAGURSKY ; Gaurav JAIN ; Aditya PATNEY
Maxillofacial Plastic and Reconstructive Surgery 2018;40(1):3-
BACKGROUND: In this research article, we evaluate the use of sub-periosteal tunneling (tunnel technique) combined with alloplastic in situ hardening biphasic calcium phosphate (BCP, a compound of β-tricalcium phosphate and hydroxyapatite) bone graft for lateral augmentation of a deficient alveolar ridge. METHODS: A total of 9 patients with deficient mandibular alveolar ridges were included in the present pilot study. Ten lateral ridge augmentation were carried out using the sub-periosteal tunneling technique, including a bilateral procedure in one patient. The increase in ridge width was assessed using CBCT evaluation of the ridge preoperatively and at 4 months postoperatively. Histological assessment of the quality of bone formation was also carried out with bone cores obtained at the implant placement re-entry in one patient. RESULTS: The mean bucco-lingual ridge width increased in average from 4.17 ± 0.99 mm to 8.56 ± 1.93 mm after lateral bone augmentation with easy-graft CRYSTAL using the tunneling technique. The gain in ridge width was statistically highly significant (p = 0.0019). Histomorphometric assessment of two bone cores obtained at the time of implant placement from one patient revealed 27.6% new bone and an overall mineralized fraction of 72.3% in the grafted area 4 months after the bone grafting was carried out. CONCLUSIONS: Within the limits of this pilot study, it can be concluded that sub-periosteal tunneling technique using in situ hardening biphasic calcium phosphate is a valuable option for lateral ridge augmentation to allow implant placement in deficient alveolar ridges. Further prospective randomized clinical trials will be necessary to assess its performance in comparison to conventional ridge augmentation procedures.
Alveolar Process
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Alveolar Ridge Augmentation
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Bone Transplantation
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Calcium
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Humans
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Miners
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Osteogenesis
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Pilot Projects
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Prospective Studies
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Transplants
2.Alveolar socket preservation with demineralised bovine bone mineral and a collagen matrix.
Carlo MAIORANA ; Pier Paolo POLI ; Matteo DEFLORIAN ; Tiziano TESTORI ; Federico MANDELLI ; Heiner NAGURSKY ; Raffaele VINCI
Journal of Periodontal & Implant Science 2017;47(4):194-210
PURPOSE: The aim of the present study was to evaluate the healing of post-extraction sockets following alveolar ridge preservation clinically, radiologically, and histologically. METHODS: Overall, 7 extraction sockets in 7 patients were grafted with demineralised bovine bone mineral and covered with a porcine-derived non-crosslinked collagen matrix (CM). Soft tissue healing was clinically evaluated on the basis of a specific healing index. Horizontal and vertical ridge dimensional changes were assessed clinically and radiographically at baseline and 6 months after implant placement. For histological and histomorphometric analysis, bone biopsies were harvested from the augmented sites during implant surgery 6 months after the socket preservation procedure. RESULTS: Clinically, healing proceeded uneventfully in all the sockets. A trend towards reduced horizontal and vertical socket dimensions was observed from baseline to the final examination. The mean width and height of resorption were 1.21 mm (P=0.005) and 0.46 mm (P=0.004), respectively. Histologically, residual xenograft particles (31.97%±3.52%) were surrounded by either newly formed bone (16.02%±7.06%) or connective tissue (50.67%±8.42%) without fibrous encapsulation. The CM underwent a physiological substitution process in favour of well-vascularised collagen-rich connective tissue. CONCLUSIONS: Socket preservation using demineralised bovine bone mineral in combination with CM provided stable dimensional changes of the alveolar ridge associated with good re-epithelialisation of the soft tissues during a 6-month healing period.
Alveolar Process
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Biopsy
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Bone Regeneration
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Bone Substitutes
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Collagen*
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Connective Tissue
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Heterografts
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Humans
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Miners*
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Tooth Loss
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Transplants