A semi-automated design workflow for patient-specific implants in orthognathic surgery using generative design.

International journal of oral and maxillofacial surgery 2025 Vol.54(12) p. 1195-1200

Cheng M, Nayak A, Leung YY

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Abstract

Patient-specific implants (PSIs) have demonstrated improved outcomes and have reduced the complexity of surgery in orthognathic surgery. However, the design process for PSIs is time-consuming and complicated, leading to high costs that hinder its widespread adoption. The aim of this study was to develop a novel workflow for designing PSIs using generative design (GD) techniques to streamline the process. The proposed workflow was implemented using GD-embedded software, Fusion (Autodesk Inc.), and tested by designing PSIs for one Le Fort I osteotomy case and one genioplasty case. The performance of the GD workflow was assessed through the time required for design and the basic properties of the GD PSIs. The hands-on time for the design was 94 min for the Le Fort I fixation plate and 45 min for the genioplasty plate. The maximum von Mises stress was 227.63 MPa for the Le Fort I fixation plate and 237.31 MPa for the genioplasty fixation plate. The GD-based workflow simplified and accelerated the design of PSIs for orthognathic surgery. Biomechanical analysis indicated the feasibility of generative designed patient-specific implants for clinical practice.

추출된 의학 개체 (NER)

유형영어 표현한국어 / 풀이UMLS CUI출처등장
시술 genioplasty 턱끝성형술 dict 3
시술 orthognathic surgery 안면윤곽술 dict 3
해부 MPa scispacy 1
약물 227.63 MPa scispacy 1
약물 MPa C0025147
medroxyprogesterone
scispacy 1
약물 Le Fort I osteotomy case scispacy 1
약물 Le Fort I scispacy 1
질환 PSIs → Patient-specific implants C5561912
Patient-Specific Implants
scispacy 1

MeSH Terms

Humans; Workflow; Orthognathic Surgical Procedures; Osteotomy, Le Fort; Computer-Aided Design; Genioplasty; Software; Biomechanical Phenomena; Bone Plates; Dental Prosthesis Design

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