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CompletedNCT06916299Updated Apr 8, 2025

Short-term Stability of Tooth-borne vs Bone-borne Maxillary Expansion: A Parallel Cohort Study

An interventional study of dental casts and tooth-borne expander insertion in Orthodontic Appliance, Orthodontic Appliances and Orthodontic Relapse, sponsored by University of Roma La Sapienza. Completed at 1 site in Italy. Per ClinicalTrials.gov, last updated 2025-04-08.

Sponsored by University of Roma La Sapienza · Not applicable, Interventional, and Diagnostic

From the registry’s dates

  • Registered 2 years after the study started (first participant enrolled Mar 2023, registered Mar 2025).
Phase
Not applicable
Study type
Interventional
Enrollment
26
Allocation
Randomized
Sex
All
01

Study summary

This prospective parallel cohort study aimed to compare the short-term stability of maxillary expansion achieved with tooth-borne (Hyrax) and bone-borne expanders.

A total of 36 patients (mean age: 12.3 ± 0.6 years) with transverse maxillary deficiency (≥8 mm) were randomly assigned to two groups: Group A (tooth-borne Hyrax) and Group B (bone-borne expander with four mini-screws). Both groups followed the same activation protocol and underwent an 8-month retention period. After this period, the expansion devices were removed, and relapse was assessed at 12 months post-expansion (T2), corresponding to 4 months after device removal. Digital dental models were analyzed using linear measurements, and statistical analysis was conducted using t-tests (p ≤ 0.05).

Read the detailed description

The present prospective study aimed to compare, through a parallel cohort study, the stability of the results obtained at the dental level of tooth-borne (hyrax) and bone-borne maxillary expansion.

It has been hypothesized that some degree of post-treatment relapse is always present and that there are no significant differences between the two types of RME.

The clinical investigation was conducted following the ethical principles of the World Medical Association Declaration of Helsinki. The parents or guardians were informed of the content, risks, and benefits of the study, and written consent was obtained. The local ethics committee approved the investigation (Rif. N. 5951- Prot. N. 250/2020). Of the 200 eligible subjects, 26 were included. The patients were randomly divided into two groups, Group A and Group B, using the statistical software Clinstat (Martin Bland, York, UK). Group A was treated with a tooth-borne hyrax expander, with two bands placed on the first permanent molars. Group B was treated with a bone-borne expander supported by four mini-screws, two inserted in the paramedian position and two in the parapalatal position. The mini-screws were placed using a computer-guided technique, assisted by a surgical guide (Easy Driver; Uniontech Orthodontic Lab, Parma, Italy), created with a 3D printer (Stratasys OrhoDesktop; Stratasys, Rehovot, Israel). The insertion site, angle, length, and diameter of the miniscrews were planned using specialized software that matched CBCT images with STL files of the digital dental models. Both the mini-screws (Benefit system; PSM Medical Solutions, Tuttlingen, Germany) and the expansion devices were inserted in the same session. In both groups, the same expansion screw (10 mm; hyrax click; Dentaurum, Ispringen, Germany) and the same activation protocol were used: 4 turns on the first day, followed by 3 turns per day for the next twelve days. An 8 mm screw opening (0.2 mm per turn) was achieved in both groups. At the end of the planned expansion, an 8-month retention period was expected. At this time, the expansion device was removed, and impressions were taken in both groups (T1).

At 12-month follow-up (T2), new impressions were taken in both groups to evaluate, at dental level, the relapse in the short term. Fig 1 The plaster study models deriving from the impressions taken at T1 and T2 were scanned using a 3D scanner (Raptor3DX platform VYLO) and saved as stereolithographic files (STL). The measurements on the three-dimensional models were carried out by two operators (M.M. and R.G.) using dedicated software (Exocad DentalDB 3.1 Rijeka 8349 Version 3.1) and repeated one month later to evaluate the intra-operator and inter-operator variability. Statistical analysis Data were collected on an Excel database (Microsoft, Redmond, WA, USA) and analysed using statistical analysis software (Python 3.6). Descriptive statistical analysis (mean values and standard deviation) was performed to evaluate the relapse at twelve months (T2), after four months since the device was permanently removed.

The measurements on the eight-month and twelve-month models (ΔT2-T1) were performed, and the T-test was used to analyse the differences between the two groups.

Cohen's kappa coefficient (k) was used to evaluate the interobserver variability. Intraclass correlation coefficient was used to assess the intra-observer variability.

In all analyses, a P ≤0.05 was considered as an indicator of statistical significance.

02

Conditions studied

  • Orthodontic Appliance
  • Orthodontic Appliances
  • Orthodontic Relapse

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Keywords

  • relapse
  • stability
  • miniscrews
  • rapid maxillary expansion
03

In context

Recurrence

4,279 studies on the registry are indexed under Recurrence; 988 are open to participants now.

This study's enrollment of 26 is below the median of 50 across 3,374 interventional studies indexed under Recurrence.

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Lead sponsor

University of Roma La Sapienza is the lead sponsor of 388 studies on the registry; 55 are open to participants now.

Counted across the registry records on this site, refreshed daily.

04

Who can participate

Ages eligible
Child (0–17), Adult (18–64), Older adult (65+)
Sexes eligible
All
Accepts healthy volunteers
No

Inclusion criteria

  • Caucasian children in late mixed dentition or permanent dentition,
  • unilateral or bilateral transverse maxillary deficiency of at least 8 mm,
  • no patients with skeletal Class III and/or open bite,
  • no previous orthodontic treatment,
  • good oral hygiene,
  • good quality of the plaster models to allow a suitable scanning.

Exclusion criteria

Exclusion Criteria:

  • systemic syndrome involved
05

Study design

Phase
Not applicable
Primary purpose
Diagnostic
Allocation
Randomized
Intervention model
Parallel assignment
Masking
None (open label)
Enrollment
26 participants (actual)

Study arms

  • Active comparator
    tooth borne expansion

    Diagnostic Test: dental casts · Device: tooth-borne expander insertion

  • Experimental
    bone-borne expansion

    Diagnostic Test: dental casts · Procedure: miniscrew and bone-borne expander insertion

Interventions

  • Diagnostic testdental casts

    At the end of the planned expansion, an 8-month retention period was expected. At this time, the expansion device was removed, and impressions were taken in both groups (T1). At 12-month follow-up (T2), new impressions were taken in both groups to evaluate, at dental level, the relapse in the short term. Fig 1

  • Devicetooth-borne expander insertion

    tooth-borne expander delivery.

  • Procedureminiscrew and bone-borne expander insertion

    Insertion of the paramedian miniscrews in a totally guided procedure, and after was delivered the tooth-borne expander

06

What researchers measure

Primary outcomes

  1. stability

    Variable Description MV Distance between the mesio-vestibular cusps of the upper first permanent molars. MP Distance between the mesio-palatal cusps of the upper first permanent molars. CP Distance between the central pits of the upper first permanent molars. AC Distance between the most vestibular points of the buccal alveolar crest at the level of the dental neck of the upper first permanent molars. VP Distance between the most vestibular points of the mesial vestibular cusps of the upper first permanent molars. ALright Right maxillary arch length, evaluated as the distance between the mesial contact point of the upper right first permanent molar and the contact point between the upper central incisors. ALleft Left maxillary arch length, evaluated as the distance between the mesial contact point of the upper left first permanent molar and the contact point between the upper central incisors. AP The arch perimeter was evaluated as the addition of the length of the segments A(1.4-1.

    Time frame: up to 14 months

07

Study locations

1 site
  • Department of Oral and Maxillofacial Sciences
    Rome, 00161, Italy
08

References and documents

Individual participant data

Plan to share: No

No publications or documents are linked to this record.

09

Updates

Tracking since Sep 25, 2026
No changes since tracking began. The registry record was last updated on Apr 8, 2025, before this site started recording changes on Sep 25, 2026. Its history is on ClinicalTrials.gov ↗
10

Registry details

Key details

Study ID
NCT06916299
Lead sponsor
University of Roma La Sapienza
Responsible party
Michele Cassetta (Full Professor, University of Roma La Sapienza) — Principal investigator
First posted
Apr 8, 2025
Start date
Mar 1, 2023
Primary completion
Oct 1, 2023
Completion
Dec 1, 2024
Last update
Apr 8, 2025

Oversight

Data monitoring committee
No
FDA-regulated drug
No
FDA-regulated device
No
View the source record on ClinicalTrials.gov ↗

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