Related Experiment Video
Updated: Dec 29, 2025

A Morphometric and Cellular Analysis Method for the Murine Mandibular Condyle
Published on: January 11, 2018
Fractal and radiomorphometric analysis of mandibular bone changes in patients undergoing intravenous corticosteroid
Ceren Aktuna Belgin1, Gozde Serindere1
1Assistant Professor, Dentistry Faculty, Department of Dentomaxillofacial Radiology, Hatay Mustafa Kemal University, Hatay, Turkey.
Objective:
To evaluate mandibular bone changes by comparing the fractal dimension (FD), mandibular cortical width (MCW), and panoramic mandibular index (PMI) on panoramic radiographs in patients using intravenous corticosteroids versus controls.
Study Design:
In total, 60 patients were divided into 2 groups: 30 patients receiving intravenous corticosteroid treatment and 30 age- and sex-matched healthy people as the control group. Panoramic radiographs of all patients were evaluated. FD was measured in 4 regions: the subcortical area in the condyle, the area superior to the angle of the mandible, the alveolar bone distal to the mandibular left second premolar root, and the alveolar bone mesial to the mental foramen. MCW and PMI were calculated to assess cortical thickness.
Results:
The FD values in the condyle, angle of the mandible, and mental foramen region were significantly lower in the corticosteroid group (P ≤ .011), but there was no significant difference in the second premolar area (P = .101). MCW values were significantly lower in the corticosteroid group (P < .001). There was no significant difference in PMI between the groups (P = .544).
Conclusions:
The FD and MCW values of the patients using corticosteroids can be helpful in quantitatively and objectively evaluating osseous changes in patients receiving intravenous corticosteroids.
More Related Videos
05:55Author Spotlight: Developing a Rat Model for Weight-Bearing Intervention to Investigate Osteonecrosis of the Femoral Head
Published on: September 27, 2024
02:42Analysis of Craniomaxillofacial Malformations in Mice Using Three-dimensional Microcomputed Tomography
Published on: January 17, 2025