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Computer-guided vs. Conventional Cortical Shell Technique for Horizontal Augmentation

Assessment of Horizontal Bone Gain Using Computer-guided vs. Conventional Cortical Shell Technique for Horizontal Maxillary Alveolar Ridge Augmentation

Status
Completed
Phases
NA
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT05311332
Enrollment
14
Registered
2022-04-05
Start date
2021-10-13
Completion date
2022-11-01
Last updated
2023-02-15

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Alveolar Bone Resorption, Horizontal Ridge Deficiency

Keywords

alveolar ridge deficiency, computer guided surgery, chin graft

Brief summary

this study aims to evaluate horizontal bone augmentation achieved at the anterior maxilla using computer-guided cortical shell bone technique and accuracy of fixation of the bone shell away from the atrophic ridge by a calculated distance which is always a challenging step for inexperienced surgeons to fix a cortical shell at the ideal position in the conventional protocol it was never guided to be precisely fixed at the proper position and angulation the problem is if it fixed with insufficient distance with proposed volume loss leads to totally insufficient volume gain for future implant placement also to evaluate the efficacy of the CAD/CAM surgical guide during chin harvesting procedures in reducing the risk of anatomical structure damage and patient morbidity with more accuracy compared with the standard technique. this trial versus free hand conventional cortical shell bone technique both harvested from symphysis area (chin).

Detailed description

Tooth extraction may be due to a variety of causes such as badly decayed, periodontal disease, and trauma whatever the reason tooth loss is always followed by loss of masticatory force and muscle stimulation to the alveolar bone so according to Wolff's Law (Wolff, 1892) loss of mechanical stimulation is followed by the reduction of bone mass. Several surgical protocols have been used to manage horizontal maxillary alveolar bone atrophy such as bone splitting and bone spreading techniques with or without filling the created space, onlay bone graft, guided bone regeneration using resorbable or non-resorbable membrane, distraction osteogenesis, and shell bone block technique which use a thin cortical bone shell to reshape the atrophied ridge and protect the particulate bone graft. Despite the popularity of this technique, it usually requires high surgical skills, prolonged intra-operative time, and unfortunately has some technical drawbacks. Such as lack of anatomical guidance during bone harvesting which may lead to injury to the important vital structure and lack of guidance during fixation may lead to improperly positioned, tilted, or rotated shell or even leaving an undesired distance between the shell and deficient ridge With the increasing use of cone-beam computed tomography (CBCT), intra and extra oral scanner for patient data acquisition, and complete digital workflow in clinical practice and it is rapidly becoming the standard of care in dentistry. Regarding bone augmentation as preparation for future implant placement. computer-aided surgery has been an innovation that enables clinicians to have firm and accurate treatment planning. Also, milling or 3D printing methods allow variable techniques for the fabrication of surgical templates. This study aims to fully digitalize such technique using patient-specific surgical guides to allow for accurate graft harvesting and positioning and to minimize intraoperative time and complications associated with this procedure

Interventions

PROCEDUREAugmentation of horizontal deficient anterior maxilla with a cortical shell harvested from a chin

Augmentation of horizontal deficient anterior maxilla using the conventional protocol of cortical shell technique

PROCEDUREAugmentation of horizontal deficient anterior maxilla with a cortical shell harvested from a chin using patient specific surgical guide then positioned with another guide

using a patient-specific surgical guide to harvest bone cortical shell from the chin and another patient-specific surgical guide to fix it in the atrophied maxillary anterior area

Sponsors

Future University in Egypt
Lead SponsorOTHER

Study design

Allocation
RANDOMIZED
Intervention model
PARALLEL
Primary purpose
TREATMENT
Masking
SINGLE (Outcomes Assessor)

Eligibility

Sex/Gender
ALL
Age
20 Years to 65 Years
Healthy volunteers
Yes

Inclusion criteria

* patient free from any systemic condition. * Edentulous anterior maxilla with a horizontal deficient alveolar ridge that is less than 4 mm measured from outer buccal cortices to outer palatal cortices. * Highly motivated patients are willing for the surgical procedure and follow-up, with informed consent.

Exclusion criteria

* Intra bony lesions (e.g. Cysts) or infections(e.g.abcess) that may retard the osteotomy healing. * Medically compromised patients. * Uncooperative patients. * Patients with any diseases or taking any medications that compromise bone healing

Design outcomes

Primary

MeasureTime frameDescription
Alveolar ridge horizontal net bone gain4 monthsvolumetric change of deficient alveolar ridge after augmentation

Secondary

MeasureTime frameDescription
surgical procedure accuracyimmediate post operativedepening on the superimposition between immediate postoperative CBCT scan over planning
intraoperation timeat time of surgeryduration of surgery

Countries

Egypt

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Feb 4, 2026