Dual Option Microtia Clinic: A Comparison of Outcomes in Microtia Reconstruction Using Autologous Rib or Porous Polyethylene Implant.
Marta KulichVijay A PatelPanteha Hayati RezvanBeth OsterbauerAmit KochharGabriel GomezPublished in: Facial plastic surgery & aesthetic medicine (2023)
Introduction: Auricular reconstruction techniques most frequently utilize either autologous costal cartilage or alloplastic porous polyethylene (PPE) implant. Objectives: To compare the aesthetic outcomes, number of surgeries, and complications in children who underwent microtia reconstruction with either rib or PPE implant by blinded photograph review. Methods: This retrospective cohort study included consecutive pediatric patients who underwent auricular reconstruction with either autologous cartilage or PPE between November 2017 and February 2022. Blinded observers rated each postoperative ear through a web-based survey. Data on patient characteristics, operative time, length of admission, and complications were collected, bivariate analyses were performed using chi-square or Fisher's exact tests for categorical variables and Wilcoxon rank-sum test for continuous variables. Results: Forty-four ears were included, 28 of which (63.6%) were reconstructed with cartilage. Median patient age was 8 years (range 4-18 years) and 29 (65.9%) were male. The cartilage group had more surgeries (median 2.5 vs. 1.0, p < 0.001), and total operating time across all surgeries did not differ significantly. Conclusion: The two groups in our study had similar rates of complications and aesthetic scores, and aesthetic scores were worse for ears with wound complications requiring unplanned revisions.
Keyphrases
- risk factors
- bone marrow
- extracellular matrix
- cell therapy
- emergency department
- case report
- platelet rich plasma
- soft tissue
- stem cells
- study protocol
- patients undergoing
- clinical trial
- randomized controlled trial
- patient satisfaction
- breast reconstruction
- type diabetes
- big data
- density functional theory
- insulin resistance
- molecular dynamics
- mesenchymal stem cells
- cross sectional
- highly efficient
- skeletal muscle
- glycemic control
- machine learning