通过几何基元的拟合来定义胫骨坐标系的方法的发展和评价。

Q2 Medicine
Stuart C Millar, John B Arnold, Lucian B Solomon, Dominic Thewlis, François Fraysse
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引用次数: 0

摘要

坐标系统的定义是膝关节生物力学建模的一个关键因素,骨骼创伤的病例是主要的技术挑战。本文提出了一种通过拟合几何基元来定义胫骨坐标系的方法,该方法需要最少的用户输入。本文介绍的方法利用胫骨轴和股骨髁的锥形配合来产生独立的轴,形成胫骨坐标系的基础。当形状拟合≥50mm时,胫骨轴的定义精度较高
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Development and evaluation of a method to define a tibial coordinate system through the fitting of geometric primitives.

Development and evaluation of a method to define a tibial coordinate system through the fitting of geometric primitives.

Development and evaluation of a method to define a tibial coordinate system through the fitting of geometric primitives.

Development and evaluation of a method to define a tibial coordinate system through the fitting of geometric primitives.

Coordinate system definition is a critical element of biomechanical modeling of the knee, and cases of skeletal trauma present major technical challenges. This paper presents a method to define a tibial coordinate system by fitting geometric primitives to surface anatomy requiring minimal user input. The method presented here utilizes a conical fit to both the tibial shaft and femoral condyles to generate independent axes forming the basis of a tibial coordinate system. Definition of the tibial axis showed high accuracy when shape fitting to ≥50 mm of shaft with <3° of angular variation from the axis obtained using the full tibia. Repeatability and reproducibility of the axis was compared using intraclass correlation coefficients which showed excellent intra- and inter-observer agreement across cases. Additionally, shape fitting to the distal femoral condyles showed high accuracy compared to the reference axis established automatically through identifying the medial and lateral epicondyles (<4°). Utilizing geometric primitives to estimate functional axes for the tibia and femur removes reliance on anatomical landmarks that can be displaced by fracture or inaccurately identified by observers. Furthermore, fitting of such primitives provides a more complete understanding of the true bony anatomy, which cannot be done through simple landmark identification.

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来源期刊
International Biomechanics
International Biomechanics Medicine-Rehabilitation
CiteScore
1.90
自引率
0.00%
发文量
2
审稿时长
17 weeks
期刊介绍: International Biomechanics is a fully Open Access biomechanics journal that aims to foster innovation, debate and collaboration across the full spectrum of biomechanics. We publish original articles, reviews, and short communications in all areas of biomechanics and welcome papers that explore: Bio-fluid mechanics, Continuum Biomechanics, Biotribology, Cellular Biomechanics, Mechanobiology, Mechano-transduction, Tissue Mechanics, Comparative Biomechanics and Functional Anatomy, Allometry, Animal locomotion in biomechanics, Gait analysis in biomechanics, Musculoskeletal and Orthopaedic Biomechanics, Cardiovascular Biomechanics, Plant Biomechanics, Injury Biomechanics, Impact Biomechanics, Sport and Exercise Biomechanics, Kinesiology, Rehabilitation in biomechanics, Quantitative Ergonomics, Human Factors engineering, Occupational Biomechanics, Developmental Biomechanics.
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