B 型超声波测量股骨外侧近端软组织厚度和成分的评分者内部可靠性

Alyssa M. Tondat, Monica R. Maly, Marina Mourtzakis, Andrew C. Laing
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引用次数: 0

摘要

目的全面描述股骨外侧近端软组织的组成和分布对于提高我们对与跌倒相关的髋部骨折的认识是非常必要的;然而,我们需要一个能产生可靠数据的方案。因此,本研究旨在评估 B 型超声波测量的肌肉、脂肪和股骨外侧近端总软组织厚度在模拟侧向跌倒配置中的评分内可靠性。方法25 名年轻成年人(12 名男性,13 名女性,年龄(SD)= 20.8 (1.9) 岁)在侧卧位时对股骨外侧近端 12 个位置进行 B 型超声波成像。选择侧卧位是为了对侧向摔倒时受到冲击的组织进行成像。在每个位置测量肌肉、脂肪和软组织总厚度(为进行统计分析,进一步分为后外侧、外侧和前外侧位置),并使用双向混合模型绝对一致的类内相关系数(ICC)和测量标准误差来评估组织类型、位置和性别的可靠性。组织类型、测量位置和性别对可靠性的影响存在交互作用。脂肪厚度的测量结果在所有条件下都非常好,而肌肉和软组织总厚度测量结果的可靠性则取决于测量位置和性别。该方案对特定受试者的髋部骨折风险筛查工具和结合生物软组织形态的冲击动力学生物力学模型具有重要意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Intra-rater reliability of B-mode ultrasound in the measurement of soft tissue thickness and composition over the lateral proximal femur

Objectives

Comprehensive characterization of soft tissue composition and distribution over the lateral proximal femur is necessary to improve our understanding of fall-related hip fractures; however, a protocol that produces reliable data is needed. Accordingly, the aim of this study was to assess the intra-rater reliability of B-mode ultrasound measured muscle, adipose, and total soft tissue thicknesses over the lateral proximal femur in a simulated sideways fall configuration.

Methods

Twenty-five young adults (12 males, 13 females, age (SD) = 20.8 (1.9) years) underwent B-mode ultrasound imaging of 12 locations over their lateral proximal femur while in a side-lying position. Side-lying was chosen to allow imaging of the tissues impacted during a lateral fall event. Muscle, adipose, and total soft tissue thicknesses were measured at each location (further grouped into posterolateral, lateral, and anterolateral locations for statistical analysis) and two-way mixed model absolute agreement intraclass correlation coefficients (ICCs) and standard error of measurement were used to assess reliability of tissue type, location, and sex.

Results

ICCs were excellent (ICC >0.9) for each tissue type, measurement location, and sex. There were interactions between tissue type, measurement location, and sex on reliability. While measures of adipose thickness were excellent across all conditions, reliability of muscle and total soft tissue thickness measurements were dependent on measurement location and sex.

Conclusions

This ultrasound imaging protocol demonstrated good-to-excellent reliability of soft tissue-specific thickness measurements over the lateral proximal femur. This protocol has implications for subject-specific hip fracture risk screening tools and biomechanical models of impact dynamics that incorporate biofidelic soft tissue morphology.
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