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Computational Modeling of Cleft Lip Nasal Deformity and Assessment of Nasal Function and Treatment Outcomes

Computational Modeling of the Mature Unilateral Cleft Lip Nasal Deformity for Objective Assessment of Patient Nasal Function and Treatment Outcomes

Status
Completed
Phases
Unknown
Study type
Observational
Source
ClinicalTrials.gov
Registry ID
NCT04150783
Enrollment
12
Registered
2019-11-05
Start date
2019-11-01
Completion date
2025-07-30
Last updated
2025-11-19

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

Conditions

Cleft Lip and Nose, Nasal Obstruction

Brief summary

The purpose of this study is to use computers to simulate airflow in 3D construction of your nasal cavity generated from cone beam CT images. The results from computer simulations will help researchers identify the severity of cleft-induced nasal dysfunction and assess the impact of current treatment in restoring breathing function. The ultimate goal is to improve post-surgery outcomes to restore nasal breathing function to normal levels.

Interventions

PROCEDURESurgical repair for nasal obstruction

Patient reported quality of life questionnaires

Sponsors

National Institute of Dental and Craniofacial Research (NIDCR)
CollaboratorNIH
Duke University
Lead SponsorOTHER

Study design

Observational model
COHORT
Time perspective
PROSPECTIVE

Eligibility

Sex/Gender
ALL
Age
18 Years to No maximum
Healthy volunteers
No

Inclusion criteria

* Provide signed and dated informed consent form. * Willing to comply with all study procedures and be available for the duration of the study. * Male or female, aged ≥18 years of age. * Clinical diagnosis of unilateral cleft lip nasal deformity (uCLND) * Scheduled to undergo elective surgery for nasal obstruction * Scheduled to have a Cone Beam Computed Tomography (CBCT) as part of the pre- operative work-up for elective surgery.

Exclusion criteria

* Prior cleft rhinoplasty or septoplasty for correction of nasal obstruction * Pregnant women: A pregnancy test will be performed within 48 hours of baseline * Patients unable or unwilling to comply with study procedures outlined in protocol

Design outcomes

Primary

MeasureTime frameDescription
Computational fluid dynamics based optimized treatment options for unilateral cleft lip nasal deformity patients based on nasal heat flux6 monthsCreation of virtual surgery nasal airway models based on computational fluid dynamics identified anatomical sites of greatest nasal obstruction. Computed nasal moisture flux will be used to identify the top three virtual surgery nasal airway models with best treatment potentials for unilateral cleft lip nasal deformity patients
Anatomical sites of greatest nasal obstruction6 monthsAnalysis on agreement of computational fluid dynamics identified anatomical sites of greatest nasal obstruction from pre-surgery 3D nasal models and actual surgical anatomical sites. CFD identified sites of greatest nasal obstruction are regions in the airway with highest nasal resistance.
Computational fluid dynamics based optimized treatment options for unilateral cleft lip nasal deformity patients based on volumetric airflow6 monthsCreation of virtual surgery nasal airway models based on computational fluid dynamics identified anatomical sites of greatest nasal obstruction. Computational fluid dynamics generated unilateral left and right side percent asymmetric will be computed used to identify the top three virtual surgery nasal airway models with best treatment potentials for unilateral cleft lip nasal deformity patients
Computational fluid dynamics based optimized treatment options for unilateral cleft lip nasal deformity patients based on nasal resistance6 monthsCreation of virtual surgery nasal airway models based on computational fluid dynamics identified anatomical sites of greatest nasal obstruction. Computed nasal resistance will be used to identify the top three virtual surgery nasal airway models with best treatment potentials for unilateral cleft lip nasal deformity patients
Effectiveness of current surgery in restoring nasal function based on nasal resistance6 monthsAnalysis of significant difference in nasal resistance between pre-surgery and post-surgery data from computational fluid dynamics simulations of patient-specific 3D nasal models generated from cone-beam computed tomography images
Validation of computational fluid dynamics simulation with breathing measurement6 monthsPercent agreement between computational fluid dynamics simulated nasal resistance and nasal resistance from rhinomanometry breathing measurement
Validation of computational fluid dynamics simulation with in vitro experiment6 monthsPercent agreement between computational fluid dynamics simulated nasal resistance and nasal resistance measurement from in vitro experiment of 3D printed plastic nasal replica
Effectiveness of current surgery in restoring nasal function based on volumetric airflow6 monthsAnalysis of significant difference in volumetric airflow rate between pre-surgery and post-surgery data from computational fluid dynamics simulations of patient-specific 3D nasal models generated from cone-beam computed tomography images.
Effectiveness of current surgery in restoring nasal function based on nasal heat flux6 monthsAnalysis of significant difference in nasal heat flux between pre-surgery and post-surgery data from computational fluid dynamics simulations of patient-specific 3D nasal models generated from cone-beam computed tomography images.
Effectiveness of current surgery in restoring nasal function based on nasal moisture flux6 monthsAnalysis of significant difference in nasal moisture flux between pre-surgery and post-surgery data from computational fluid dynamics simulations of patient-specific 3D nasal models generated from cone-beam computed tomography images.

Secondary

MeasureTime frameDescription
in vitro analysis for top three virtual surgery nasal models with best treatment based on nasal pressure6 monthsin vitro analysis from 3D printed plastic nasal replica of top three virtual surgery nasal models with best treatment potential will be done using unilateral airflow pressure.
in vitro analysis for top three virtual surgery nasal models with best treatment based on unilateral volumetric airflow6 monthsin vitro analysis from 3D printed plastic nasal replica of top three virtual surgery nasal models with best treatment potential will be done using unilateral volumetric airflow rate.
Change in patient-reported outcome (PRO) measuresbaseline, 2 weeks, 8 weeks, 6 months, 12 monthsChange PRO measures as measured by NOSE questionnaire

Countries

United States

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Feb 9, 2026