Quantitative Muscle Fascicle Tractography Using Brightness-Mode Ultrasound.

IF 1.1 4区 医学 Q4 ENGINEERING, BIOMEDICAL
Journal of Applied Biomechanics Pub Date : 2023-10-04 Print Date: 2023-12-01 DOI:10.1123/jab.2022-0270
Hannah Kilpatrick, Emily Bush, Carly Lockard, Xingyu Zhou, Crystal Coolbaugh, Bruce Damon
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引用次数: 0

Abstract

A muscle's architecture, defined as the geometric arrangement of its fibers with respect to its mechanical line of action, impacts its abilities to produce force and shorten or lengthen under load. Ultrasound and other noninvasive imaging methods have contributed significantly to our understanding of these structure-function relationships. The goal of this work was to develop a MATLAB toolbox for tracking and mathematically representing muscle architecture at the fascicle scale, based on brightness-mode ultrasound imaging data. The MuscleUS_Toolbox allows user-performed segmentation of a region of interest and automated modeling of local fascicle orientation; calculation of streamlines between aponeuroses of origin and insertion; and quantification of fascicle length, pennation angle, and curvature. A method is described for optimizing the fascicle orientation modeling process, and the capabilities of the toolbox for quantifying and visualizing fascicle architecture are illustrated in the human tibialis anterior muscle. The toolbox is freely available.

使用亮度模式超声的定量肌肉筋膜束造影术。
肌肉的结构,定义为其纤维相对于其机械作用线的几何排列,影响其产生力的能力以及在负载下缩短或延长的能力。超声和其他非侵入性成像方法对我们理解这些结构-功能关系做出了重大贡献。这项工作的目标是开发一个MATLAB工具箱,用于基于亮度模式超声成像数据在束尺度上跟踪和数学表示肌肉结构。MuscleUS_Toolbox允许用户执行感兴趣区域的分割和局部束方向的自动建模;计算起源和插入的aponeuross之间的流线;以及束长度、三角旗角度和曲率的量化。描述了一种优化神经束定向建模过程的方法,并说明了工具箱在人类胫骨前肌中量化和可视化神经束结构的能力。工具箱是免费提供的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Applied Biomechanics
Journal of Applied Biomechanics 医学-工程:生物医学
CiteScore
2.00
自引率
0.00%
发文量
47
审稿时长
6-12 weeks
期刊介绍: The mission of the Journal of Applied Biomechanics (JAB) is to disseminate the highest quality peer-reviewed studies that utilize biomechanical strategies to advance the study of human movement. Areas of interest include clinical biomechanics, gait and posture mechanics, musculoskeletal and neuromuscular biomechanics, sport mechanics, and biomechanical modeling. Studies of sport performance that explicitly generalize to broader activities, contribute substantially to fundamental understanding of human motion, or are in a sport that enjoys wide participation, are welcome. Also within the scope of JAB are studies using biomechanical strategies to investigate the structure, control, function, and state (health and disease) of animals.
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