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使用基于磁共振成像的数字体积相关技术对人体臀部在坐姿时进行体内应变测量。

In vivo strain measurements in the human buttock during sitting using MR-based digital volume correlation.

作者信息

Zappalá Stefano, Keenan Bethany E, Marshall David, Wu Jing, Evans Sam L, Al-Dirini Rami M A

机构信息

School of Computer Science and Informatics, Cardiff University, Cardiff, UK; Cardiff University Brain Research Imaging Centre (CUBRIC), School of Psychology, Cardiff University, Cardiff, UK.

School of Engineering, Cardiff University, Cardiff, UK.

出版信息

J Biomech. 2024 Jan;163:111913. doi: 10.1016/j.jbiomech.2023.111913. Epub 2023 Dec 22.

Abstract

Advancements in systems for prevention and management of pressure ulcers require a more detailed understanding of the complex response of soft tissues to compressive loads. This study aimed at quantifying the progressive deformation of the buttock based on 3D measurements of soft tissue displacements from MR scans of 10 healthy subjects in a semi-recumbent position. Measurements were obtained using digital volume correlation (DVC) and released as a public dataset. A first parametric optimisation of the global registration step aimed at aligning skeletal elements showed acceptable values of Dice coefficient (around 80%). A second parametric optimisation on the deformable registration method showed errors of 0.99mm and 1.78mm against two simulated fields with magnitude 7.30±3.15mm and 19.37±9.58mm, respectively, generated with a finite element model of the buttock under sitting loads. Measurements allowed the quantification of the slide of the gluteus maximus away from the ischial tuberosity (IT, average 13.74 mm) that was only qualitatively identified in the literature, highlighting the importance of the ischial bursa in allowing sliding. Spatial evolution of the maximus shear strain on a path from the IT to the seating interface showed a peak of compression in the fat, close to the interface with the muscle. Obtained peak values were above the proposed damage threshold in the literature. Results in the study showed the complexity of the deformation of the soft tissues in the buttock and the need for further investigations aimed at isolating factors such as tissue geometry, duration and extent of load, sitting posture and tissue properties.

摘要

压力性溃疡预防和管理系统的进步需要更详细地了解软组织对压缩负荷的复杂反应。本研究旨在基于对10名半卧位健康受试者的磁共振扫描软组织位移进行三维测量,量化臀部的渐进性变形。测量使用数字体积相关(DVC)技术获得,并作为公共数据集发布。对旨在对齐骨骼元素的全局配准步骤进行的首次参数优化显示,骰子系数值可接受(约80%)。对可变形配准方法进行的第二次参数优化显示,与分别由臀部在坐姿负荷下的有限元模型生成的两个模拟场相比,误差分别为0.99mm和1.78mm,模拟场的大小分别为7.30±3.15mm和19.37±9.58mm。测量结果能够量化臀大肌远离坐骨结节(IT,平均13.74mm)的滑动情况,而这在文献中仅被定性识别,突出了坐骨囊在允许滑动方面的重要性。从IT到座位界面的路径上最大剪切应变的空间演变表明,在靠近与肌肉界面的脂肪中存在压缩峰值。获得的峰值高于文献中提出的损伤阈值。研究结果表明了臀部软组织变形的复杂性,以及需要进一步开展研究以分离诸如组织几何形状、负荷持续时间和程度、坐姿以及组织特性等因素。

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