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PMID: 38463850 Published · epublish English Journal Article

Reducing variability in nasal surgery outcomes through computational fluid dynamics and advanced 3D virtual surgery techniques.

Heliyon ·Vol. 10 ·No. 5 ·2024-03-15 ·页码 e26855

Burgos MA, Rosique L, Piqueras F, García-Navalón C, Sevilla-García MA, Hellín D, Esteban F

Abstract

This study aims to delineate the specific impact of using computational fluid dynamics (CFD) and 3D virtual surgery techniques in otolaryngology surgery, focusing on their roles in enhancing the precision of nasal surgery and optimizing future patient outcomes. The central objective was to assess whether these advanced technologies could reduce variability in surgical approaches and decision-making among specialists, thereby improving the consistency and efficacy of patient care in cases of nasal obstruction. Our methodology involved a detailed analysis of pre- and post-operative scenarios using CFD feedback. Six otolaryngologists participated, employing virtual surgery techniques on two patients with diagnosed nasal obstruction. The CFD analysis focused on quantifying key airflow parameters: right nasal flow rate (QR), left nasal flow rate (QL), flow symmetry (Ф), and bilateral nasal resistance (R). These parameters were meticulously compared before and after the application of CFD feedback to evaluate changes in surgical planning and outcomes. Quantitative analysis revealed a notable decrease in the standard deviation of the measured parameters among the specialists post-CFD feedback, indicating reduced variability in surgical approaches. Specifically, for Patient #1 the standard deviation for QR values dropped from 0.694 L/min to 0.602 L/min, and for QL values from 0.676 L/min to 0.584 L/min, and for Patient #2, the standard deviation for QR values decreased from 2.204 L/min to 0.958 L/min, and for QL values from 2.295 L/min to 1.014 L/min. Moreover, the variability range, represented by the differences between the maximum and minimum values for Ф and R, diminished significantly. Post-operative average values for all parameters showed a convergence towards ideal basal levels, suggesting a more uniform and effective surgical strategy across different surgeons. Both integration of CFD and 3D virtual surgery techniques in otolaryngology can substantially reduce variability in surgical planning and decision-making, ultimately leading to improved patient outcomes. These advanced tools have the potential to standardize the diagnosis and treatment of nasal pathologies, contributing to more effective and consistent care. Future research in this area should focus on larger patient cohorts and further exploration of the potential benefits and applications of CFD and virtual surgery in otolaryngology.

Keywords
3D virtual surgery Computational fluid dynamics (CFD) Improved patient outcomes Nasal airflow assessment Nasal obstruction treatment Nasal surgery variability Otolaryngology Personalized surgical planning
作者与单位
共 7 位作者,点击展开单位 / ORCID
Burgos M A
Department of Ingeniería Térmica y de Fluidos, Universidad Politécnica de Cartagena, Spain.
Rosique Lina
Department of Otolaryngology, Hospital General Universitario Morales Meseguer, Murcia, Spain.
Piqueras F
Department of Otolaryngology, Hospital General Universitario Morales Meseguer, Murcia, Spain.
García-Navalón C
Department of Otolaryngology, Consorcio Hospital General Universitario de Valencia, Spain.
Sevilla-García M A
Department of Otolaryngology, Hospital Clínico Universitario Virgen de la Arrixaca, Murcia, Spain.
Hellín D
Department of Otolaryngology, Hospital Clínico Universitario Virgen de la Arrixaca, Murcia, Spain.
Esteban F
Department of Surgery, School of Medicine, University of Seville, Spain. | Department of Otolaryngology, Hospital Universitario Virgen del Rocío, Seville, Spain.
Article Info
Journal
Heliyon
Abbr.
Heliyon
ISSN
2405-8440
Published
2024-03-15
电子出版
2024-00-28
页码
e26855
Language
English
Country/Region
England
NLM ID
101672560
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