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PMID: 38744016 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

An adjoint-based approach for the surgical correction of nasal septal deviations.

Computers in biology and medicine ·Vol. 176 ·2024-00-00 ·Pages 108566

Macellari M, Schillaci A, Tanzini U, Trimarchi M, Quadrio M

Abstract

Deviations of the septal wall are widespread anatomic anomalies of the human nose; they vary significantly in shape and location, and often cause the obstruction of the nasal airways. When severe, septal deviations need to be surgically corrected by ear-nose-throat (ENT) specialists. Septoplasty, however, has a low success rate, owing to the lack of suitable standardized clinical tools for assessing type and severity of obstructions, and for surgery planning. Moreover, the restoration of a perfectly straight septal wall is often impossible and possibly unnecessary. This paper introduces a procedure, based on advanced patient-specific Computational Fluid Dynamics (CFD) simulations, to support ENT surgeons in septoplasty planning. The method hinges upon the theory of adjoint-based optimization, and minimizes a cost function that indirectly accounts for viscous losses. A sensitivity map is computed on the mucosal wall to provide the surgeon with a simple quantification of how much tissue removal at each location would contribute to easing the obstruction. The optimization procedure is applied to three representative nasal anatomies, reconstructed from CT scans of patients affected by complex septal deviations. The computed sensitivity consistently identifies all the anomalies correctly. Virtual surgery, i.e. morphing of the anatomies according to the computed sensitivity, confirms that the characteristics of the nasal airflow improve significantly after small anatomy changes derived from adjoint-based optimization.

Keywords
Adjoint optimization CFD Septal deviations Septoplasty
MeSH Terms
Humans Nasal Septum/surgery,diagnostic imaging,abnormalities Tomography, X-Ray Computed Computer Simulation Male Female Nasal Obstruction/surgery,diagnostic imaging,physiopathology Hydrodynamics
Authors & Affiliations
5 authors, click to expand affiliations / ORCID
Macellari Marcello
Department of Aerospace Science and Technologies, Politecnico di Milano, Campus Bovisa, Milano 20156, Italy.
Schillaci Andrea
Department of Aerospace Science and Technologies, Politecnico di Milano, Campus Bovisa, Milano 20156, Italy.
Tanzini Umberto
Division of Head and Neck, Otorhinolaryngology unit, IRCCS San Raffaele Scientific Institute, Milano, Italy; School of Medicine, Vita-Salute San Raffaele University, Milano, Italy.
Trimarchi Matteo
Department of Otolaryngology - Head and Neck Surgery, Ente Ospedaliero Cantonale, Ospedale Regionale di Lugano - Universita' della Svizzera Italiana, Lugano, Switzerland.
Quadrio Maurizio
Department of Aerospace Science and Technologies, Politecnico di Milano, Campus Bovisa, Milano 20156, Italy. Electronic address: [email protected].
Article Info
Journal
Computers in biology and medicine
Abbr.
Comput Biol Med
ISSN
1879-0534
Published
2024-00-00
Epub
2024-00-08
Pages
108566
Language
English
Region
United States
NLM ID
1250250
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