Estimation of Nasal Tip Support Using Computer-Aided Design and 3-Dimensional Printed Models.
Abstract
[IMPORTANCE] Palpation of the nasal tip is an essential component of the preoperative rhinoplasty examination. Measuring tip support is challenging, and the forces that correspond to ideal tip support are unknown.
[OBJECTIVE] To identify the integrated reaction force and the minimum and ideal mechanical properties associated with nasal tip support.
[DESIGN, SETTING, AND PARTICIPANTS] Three-dimensional (3-D) printed anatomic silicone nasal models were created using a computed tomographic scan and computer-aided design software. From this model, 3-D printing and casting methods were used to create 5 anatomically correct nasal models of varying constitutive Young moduli (0.042, 0.086, 0.098, 0.252, and 0.302 MPa) from silicone. Thirty rhinoplasty surgeons who attended a regional rhinoplasty course evaluated the reaction force (nasal tip recoil) of each model by palpation and selected the model that satisfied their requirements for minimum and ideal tip support. Data were collected from May 3 to 4, 2014.
[RESULTS] Of the 30 respondents, 4 surgeons had been in practice for 1 to 5 years; 9 surgeons, 6 to 15 years; 7 surgeons, 16 to 25 years; and 10 surgeons, 26 or more years. Seventeen surgeons considered themselves in the advanced to expert skill competency levels. Logistic regression estimated the minimum threshold for the Young moduli for adequate and ideal tip support to be 0.096 and 0.154 MPa, respectively. Logistic regression estimated the thresholds for the reaction force associated with the absolute minimum and ideal requirements for good tip recoil to be 0.26 to 4.74 N and 0.37 to 7.19 N during 1- to 8-mm displacement, respectively.
[CONCLUSIONS AND RELEVANCE] This study presents a method to estimate clinically relevant nasal tip reaction forces, which serve as a proxy for nasal tip support. This information will become increasingly important in computational modeling of nasal tip mechanics and ultimately will enhance surgical planning for rhinoplasty.
[LEVEL OF EVIDENCE] NA.
[OBJECTIVE] To identify the integrated reaction force and the minimum and ideal mechanical properties associated with nasal tip support.
[DESIGN, SETTING, AND PARTICIPANTS] Three-dimensional (3-D) printed anatomic silicone nasal models were created using a computed tomographic scan and computer-aided design software. From this model, 3-D printing and casting methods were used to create 5 anatomically correct nasal models of varying constitutive Young moduli (0.042, 0.086, 0.098, 0.252, and 0.302 MPa) from silicone. Thirty rhinoplasty surgeons who attended a regional rhinoplasty course evaluated the reaction force (nasal tip recoil) of each model by palpation and selected the model that satisfied their requirements for minimum and ideal tip support. Data were collected from May 3 to 4, 2014.
[RESULTS] Of the 30 respondents, 4 surgeons had been in practice for 1 to 5 years; 9 surgeons, 6 to 15 years; 7 surgeons, 16 to 25 years; and 10 surgeons, 26 or more years. Seventeen surgeons considered themselves in the advanced to expert skill competency levels. Logistic regression estimated the minimum threshold for the Young moduli for adequate and ideal tip support to be 0.096 and 0.154 MPa, respectively. Logistic regression estimated the thresholds for the reaction force associated with the absolute minimum and ideal requirements for good tip recoil to be 0.26 to 4.74 N and 0.37 to 7.19 N during 1- to 8-mm displacement, respectively.
[CONCLUSIONS AND RELEVANCE] This study presents a method to estimate clinically relevant nasal tip reaction forces, which serve as a proxy for nasal tip support. This information will become increasingly important in computational modeling of nasal tip mechanics and ultimately will enhance surgical planning for rhinoplasty.
[LEVEL OF EVIDENCE] NA.
추출된 의학 개체 (NER)
| 유형 | 영어 표현 | 한국어 / 풀이 | UMLS CUI | 출처 | 등장 |
|---|---|---|---|---|---|
| 해부 | nasal tip
|
코끝 | dict | 7 | |
| 해부 | tip
|
코끝 | dict | 5 | |
| 시술 | rhinoplasty
|
코성형술 | dict | 4 | |
| 해부 | nasal
|
scispacy | 1 | ||
| 해부 | moduli
|
scispacy | 1 | ||
| 약물 | silicone
|
C0037114
silicones
|
scispacy | 1 | |
| 약물 | [IMPORTANCE] Palpation
|
scispacy | 1 | ||
| 약물 | [OBJECTIVE]
|
scispacy | 1 | ||
| 약물 | [CONCLUSIONS AND
|
scispacy | 1 |
MeSH Terms
Clinical Competence; Compressive Strength; Computer-Aided Design; Elastic Modulus; Humans; Models, Anatomic; Nose; Palpation; Printing, Three-Dimensional; Rhinoplasty; Silicones; Software; Tomography, X-Ray Computed
🔗 함께 등장하는 도메인
이 논문이 속한 카테고리와 같은 논문에서 자주 함께 다뤄지는 카테고리들
관련 논문
- The impact of three-dimensional simulation and virtual reality technologies on surgical decision-making and postoperative satisfaction in aesthetic surgery: a preliminary study.
- Aesthetically ideal noses created using a single artificial intelligence model: Validating literature and exploring ethnic differences.
- Septocolumellar strut technique: Tip stability and aesthetic outcomes in rhinoplasty.
- Implications of Dermatologic Disorders in Facial Cosmetic Surgery: A Systematic Review.
- IN-HUMAN FEASIBILITY AND SAFETY OF SUBRETINAL DRUG INJECTION THROUGH ATTACHED RETINA USING A ROBOTIC COMANIPULATION SYSTEM.