利用 mDixon Quant 核磁共振成像(MRI)评估腰椎旁肌肉形态:一项针对健康受试者的横断面研究。

IF 2.9 2区 医学 Q2 RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING
Quantitative Imaging in Medicine and Surgery Pub Date : 2024-08-01 Epub Date: 2024-07-26 DOI:10.21037/qims-23-1796
Peter Krkoska, Viktoria Kokosova, Marek Dostal, Daniela Vlazna, Milos Kerkovsky, Matej Straka, Radim Gerstberger, Katerina Matulova, Petra Ovesna, Blanka Adamova
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引用次数: 0

摘要

背景:腰椎旁肌肉(LPM)是脊柱深层稳定系统的一部分,在稳定腰椎和躯干方面发挥着重要作用。这些肌肉功能不足被认为是腰背痛的一个重要致病因素,一些神经肌肉疾病的特征就是腰背肌功能障碍。我们研究的主要目的是利用先进的磁共振成像(MRI)方法(包括手动分割过程)开发评估 LPM 的方法,确认测量的可靠性,评估健康人群中的 LPM 形态参数 [脂肪分数 (FF)、肌肉总体积 (TMV) 和功能性肌肉体积 (FMV)],研究生理因素对肌肉形态的影响,并建立预测健康人群中 LPM 形态参数的方程:这项前瞻性横断面观察比较单中心研究在布尔诺大学医院进行,招募了 2021 年 4 月至 2023 年 3 月期间的健康志愿者。使用 6 点 Dixon 梯度回波序列对腰椎和 LPM(竖脊肌和多侧肌)进行了磁共振成像。手动分割 LPM 和对照肌肉(腰肌),以获得从 Th12/L1 到 L5/S1 范围内的 FF 和 TMV。对评分者内部和评分者之间的可靠性进行了评估。建立线性回归模型以评估生理因素对肌肉FF、TMV和FMV的影响:我们招募了 90 名健康志愿者(中位年龄 38 岁,45 名男性)。事实证明,建立分割掩膜以及评估 FF 和 TMV 是可靠的(Dice 系数 84% 至 99%,类内相关系数≥0.97)。单变量模型显示,LPM 的 FF 受年龄的影响最大(占变异率的 39.6% 至 44.8%,PConclusions):已开发出一种可靠的方法来评估 LPM 的形态参数(生物标志物)。LPM的形态参数受生理因素的影响很大。该研究构建了方程,以计算与人体测量参数、年龄和性别相关的单块肌肉的预测 FF、TMV 和 FMV。这项研究介绍了 LPM 评估方法和健康人群中 LPM 形态参数的预测值,有助于我们更好地了解涉及 LPM 的疾病(腰背痛和一些神经肌肉疾病)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Assessment of lumbar paraspinal muscle morphology using mDixon Quant magnetic resonance imaging (MRI): a cross-sectional study in healthy subjects.

Background: Lumbar paraspinal muscles (LPM) are a part of the deep spinal stabilisation system and play an important role in stabilising the lumbar spine and trunk. Inadequate function of these muscles is thought to be an essential aetiological factor in low back pain, and several neuromuscular diseases are characterised by dysfunction of LPM. The main aims of our study were to develop a methodology for LPM assessment using advanced magnetic resonance imaging (MRI) methods, including a manual segmentation process, to confirm the measurement reliability, to evaluate the LPM morphological parameters [fat fraction (FF), total muscle volume (TMV) and functional muscle volume (FMV)] in a healthy population, to study the influence of physiological factors on muscle morphology, and to build equations to predict LPM morphological parameters in a healthy population.

Methods: This prospective cross-sectional observational comparative single-centre study was conducted at the University Hospital in Brno, enrolling healthy volunteers from April 2021 to March 2023. MRI of the lumbar spine and LPM (erector spinae muscle and multifidus muscle) were performed using a 6-point Dixon gradient echo sequence. The segmentation of the LPM and the control muscle (psoas muscle) was done manually to obtain FF and TMV in a range from Th12/L1 to L5/S1. Intra-rater and inter-rater reliability were evaluated. Linear regression models were constructed to assess the effect of physiological factors on muscle FF, TMV and FMV.

Results: We enrolled 90 healthy volunteers (median age 38 years, 45 men). The creation of segmentation masks and the assessment of FF and TMV proved reliable (Dice coefficient 84% to 99%, intraclass correlation coefficient ≥0.97). The univariable models showed that FF of LPM was influenced the most by age (39.6% to 44.8% of variability, P<0.001); TMV and FMV by subject weight (34.9% to 67.6% of variability, P<0.001) and sex (24.7% to 64.1% of variability, P<0.001). Multivariable linear regression models for FF of LPM included age, body mass index and sex, with R-squared values ranging from 45.4% to 51.1%. Models for volumes of LPM included weight, age and sex, with R-squared values ranged from 37.4% to 76.8%. Equations were developed to calculate predicted FF, TMV and FMV for each muscle.

Conclusions: A reliable methodology has been developed to assess the morphological parameters (biomarkers) of the LPM. The morphological parameters of the LPM are significantly influenced by physiological factors. Equations were constructed to calculate the predicted FF, TMV and FMV of individual muscles in relation to anthropometric parameters, age, and sex. This study, which presented LPM assessment methodology and predicted values of LPM morphological parameters in a healthy population, could improve our understanding of diseases involving LPM (low back pain and some neuromuscular diseases).

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来源期刊
Quantitative Imaging in Medicine and Surgery
Quantitative Imaging in Medicine and Surgery Medicine-Radiology, Nuclear Medicine and Imaging
CiteScore
4.20
自引率
17.90%
发文量
252
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