Related Experiment Video
Updated: Sep 21, 2025

In vivo Evaluation of Mucociliary Clearance in Mice
Published on: December 18, 2020
Tomographic Imaging of Mucociliary Clearance Following Maxillary Sinus Augmentation: A Case Series
Won-Bae Park1, Nam-Jun Cho2, Philip Kang2
1Department of Periodontology, School of Dentistry, Kyung Hee University, Seoul 02771, Korea.
Abstract:
Mucociliary clearance (MCC) allows ventilation of graft particles that are displaced through a perforated Schneiderian membrane during maxillary sinus augmentation (MSA). However, it is very rarely confirmed by cone-beam computed tomographic (CBCT) images. It is not yet known how long the dislodged bone graft particles remain in the maxillary sinus or how quickly they are ventilated after MSA. The purpose of these case reports is to introduce tomographic imaging of ventilation of bone graft particles displaced through a perforated Schneiderian membrane after MSA. Four patients, who needed implant placement in the posterior maxilla, received MSA, during which the Schneiderian membrane was perforated but was not repaired. Therefore, some bone graft particles were dislocated into the sinus cavity. The sizes of the perforated membranes were measured and recorded. CBCT scans were taken at multiple time points after the surgery to visualize and trace the ejected material. In addition, the time from when the bone graft substitute was delivered to the sinus until the CBCT scans were taken was recorded. The expelled bone graft particles migrated to the ostium along the sinus wall immediately after MSA on CBCT images taken immediately after the surgery. No displaced graft particles were observed in the maxillary sinus on CBCT scans after 1 week. The CBCT scans at 6 months showed no unusual radiographic images. Within the limitations of the case reports, tomographic imaging revealed an MCC system that allows displaced graft particles to be ventilated into the ostium very early during MSA healing and not stagnate in the maxillary sinus.
Insights
Mucociliary clearance (MCC) rapidly ventilates bone graft particles displaced during maxillary sinus augmentation (MSA). Cone-beam computed tomography (CBCT) confirmed particles cleared within one week, showing early healing.
Area of Science:
- Dentistry
- Oral and Maxillofacial Surgery
- Radiology
Background:
- Maxillary sinus augmentation (MSA) is a common procedure for posterior maxilla implants.
- Perforation of the Schneiderian membrane can lead to dislodged bone graft particles in the sinus cavity.
- The fate and clearance time of these displaced particles are not well-documented.
Observation:
- This case report series introduces tomographic imaging of bone graft particle ventilation after MSA.
- Four patients with perforated Schneiderian membranes during MSA were monitored using CBCT.
- Graft particle displacement into the sinus cavity occurred due to unrepaired membrane perforations.
Findings:
- Dislocated bone graft particles were observed migrating towards the sinus ostium immediately after MSA on CBCT scans.
- No displaced graft particles were visible in the maxillary sinus on CBCT scans taken one week post-surgery.
- Radiographic imaging at six months showed no abnormalities, indicating complete clearance.
Implications:
- Tomographic imaging confirms the efficacy of the mucociliary clearance (MCC) system in ventilating displaced graft materials.
- Dislodged bone graft particles are cleared early during maxillary sinus augmentation healing.
- This suggests a self-cleansing mechanism preventing particle stagnation within the maxillary sinus.

