Iatrogenic internal nasal valve (INV) dysfunction is a significant complication after nasal surgery, often necessitating revision surgeries involving cartilage grafting, which carries high risks of complications such as mucosal synechiae, septal perforations, and chronic inflammation. This study evaluates the efficacy of a modified dermal-fat flap suspension technique as an alternative to conventional cartilage grafting for INV reconstruction. A retrospective review was conducted of 30 patients treated between March 2019 and March 2023, including 8 patients who underwent the modified dermal suspension technique and 22 who received spreader grafts. Preoperative and postoperative nasal obstruction symptom evaluation scores were statistically analyzed using the Mann-Whitney U test. While both groups demonstrated significant postoperative improvements, no statistically significant differences were found between the groups. The modified technique, performed under local anesthesia, was associated with fewer complications and avoided extensive cartilage grafting or mucosal dissection, making it particularly suitable for patients with advanced age, high ASA scores, or complex surgical histories. Common complications included transient orbital edema and rare cases of skin discoloration, which resolved over time. Despite a small sample size and reliance on subjective nasal obstruction symptom evaluation scores, this study highlights the potential of the modified dermal-fat flap suspension technique as a less invasive, effective alternative for managing INV dysfunction, especially in high-risk patients. Further studies with larger cohorts and objective measures are needed to validate these findings.
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http://dx.doi.org/10.1097/SCS.0000000000011200 | DOI Listing |
J Osteopath Med
March 2025
Wood College of Osteopathic Medicine, Marian University, Indianapolis, IN, USA.
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Grupo de Investigación de Nanotecnología Aplicada para Biorremediación Ambiental, Energía, Biomedicina y Agricultura (NANOTECH), Facultad de Ciencias Físicas, Universidad Nacional Mayor de San Marcos, Av. Venezuela Cdra 34 S/N, Ciudad Universitaria, Lima 15081, Peru.
The use of natural organic extracts in nanoparticle synthesis can reduce environmental impacts and reagent costs. With that purpose in mind, a novel biosynthesis procedure for the formation of magnetic iron-oxide nanoparticles (IONPs) using extract in an aqueous medium has been systematically carried out. First, the biosynthesis was optimized for various extract concentrations, prepared by decoction and infusion methods, and yielded IONPs with sizes from 4 to 9 nm.
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March 2025
Amgen Bioprocessing Center, Henry E. Riggs School of Applied Life Sciences, Keck Graduate Institute, California, USA.
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