6533b857fe1ef96bd12b4e5c

RESEARCH PRODUCT

Volume stability of hydroxyapatite and β-tricalcium phosphate biphasic bone graft material in maxillary sinus floor elevation: a radiographic study using 3D cone beam computed tomography

Bilal Al NawasGyu-tae KimJung-woo LeeJunho JungJoo-young OheYong-dae Kwon

subject

AdultCalcium PhosphatesMaleCone beam computed tomographySinus Floor Augmentationmedicine.medical_specialtyMaterials scienceMaxillary sinusRadiographySinus Floor AugmentationSinus floor elevation03 medical and health sciencesImaging Three-Dimensional0302 clinical medicinemedicineHumansProspective Studies030212 general & internal medicineAgedβ tricalcium phosphatebusiness.industry3d image processingMembranes Artificial030206 dentistryCone-Beam Computed TomographyMiddle AgedSurgeryDurapatiteTreatment Outcomemedicine.anatomical_structureVolume (thermodynamics)Bone SubstitutesRadiographic Image Interpretation Computer-AssistedFemaleCollagenOral SurgerybusinessBiomedical engineering

description

Objectives The purpose of this study was to confirm volume stability of biphasic calcium phosphate (BCP) through the changes of grafted volume over the time by 3D CT analyzing software program. Patients and Methods Fifteen patients, 16 sinuses who were scheduled a staged implantation through sinus floor elevation (SFE)–lateral window technique from 2009 to 2011 were included in the study. Of the 15 patients, eight were male and seven were female (mean age 50.1). For sinus floor augmentation, BCP with local blood was packed loosely into the maxillary sinus and the grafted site was covered with a collagen membrane. For the evaluation of volume change, 3D CBCT scans were taken five times at pre-operatively (To), post-op 1 week (T1), 1 month (T2), 3 months (T3), and 6 months (T4). 3D image processing software (OnDemand3DTM software) was used for this study. The time sequential change was statistically evaluated. Result 84.32% grafted BCP is maintained until post-op 6 month (T4), and the average volume loss is 207.7 mm3 (about 0.21 cc). Statistically, a significant volume change (decreasing) was observed in three groups (T2–T1, T3–T2, T4–T3). Conclusion Biphasic calcium phosphate, as a synthetic material, has high volume stability and is a predictable graft material for the successful SFE. Although some limitations of the 3D analyzing software program, it is a fast, simple, relatively accurate and promising approach to quantifying long-term changes in the grafted area.

https://doi.org/10.1111/clr.12551