Department of Diagnostic and Interventional Neuroradiology, Klinikum rechts der Isar, Technical University of Munich, Munich, Germany.
Department of Diagnostic and Interventional Radiology, Klinikum rechts der Isar, Technical University of Munich, Munich, Germany.
J Magn Reson Imaging. 2019 Sep;50(3):816-823. doi: 10.1002/jmri.26679. Epub 2019 Feb 5.
The paraspinal muscles play an important role in the onset and progression of lower back pain. It would be of clinical interest to identify imaging biomarkers of the paraspinal musculature that are related to muscle function and strength. Diffusion tensor imaging (DTI) enables the microstructural examination of muscle tissue and its pathological changes.
To investigate associations of DTI parameters of the lumbar paraspinal muscles with isometric strength measurements in healthy volunteers.
Prospective.
Twenty-one healthy subjects (12 male, 9 female; age = 30.1 ± 5.6 years; body mass index [BMI] = 27.5 ± 2.6 kg/m ) were recruited.
FIELD STRENGTH/SEQUENCE: 3 T/single-shot echo planar imaging (ss-EPI) DTI in 24 directions; six-echo 3D spoiled gradient echo sequence for chemical shift encoding-based water-fat separation.
Paraspinal muscles at the lumbar spine were examined. Erector spinae muscles were segmented bilaterally; cross-sectional area (CSA), proton density fat fraction (PDFF), and DTI parameters were calculated. Muscle flexion and extension maximum isometric torque values [Nm] at the back were measured with an isokinetic dynamometer and the ratio of extension to flexion strength (E/F) calculated.
Pearson correlation coefficients; multivariate regression models.
Significant positive correlations were found between the ratio of extension to flexion (E/F) strength and mean diffusivity (MD) (P = 0.019), RD (P = 0.02) and the eigenvalues (λ1: P = 0.026, λ2: P = 0.033, λ3: P = 0.014). In multivariate regression models λ3 of the erector spinae muscle λ3 and gender remained statistically significant predictors of E/F (R = 0.42, P = 0.003).
DTI allowed the identification of muscle microstructure differences related to back muscle function that were not reflected by CSA and PDFF. DTI may potentially track subtle changes of back muscle tissue composition.
3 Technical Efficacy: Stage 2 J. Magn. Reson. Imaging 2019;50:816-823.
腰背旁肌在腰痛的发生和发展中起着重要作用。如果能找到与肌肉功能和力量相关的腰背旁肌影像学生物标志物,这将具有重要的临床意义。弥散张量成像(DTI)可以检查肌肉组织的微观结构及其病理变化。
探讨健康志愿者腰椎旁肌的 DTI 参数与等长力量测量之间的相关性。
前瞻性。
21 名健康志愿者(12 名男性,9 名女性;年龄=30.1±5.6 岁;体重指数[BMI]=27.5±2.6kg/m )被招募。
场强/序列: 3T 单次激发回波平面成像(ss-EPI)DTI 共 24 个方向;三维扰相梯度回波化学位移水脂分离序列用于六个回波。
检查腰椎旁脊柱的肌肉。双侧分段竖脊肌;计算横截面积(CSA)、质子密度脂肪分数(PDFF)和 DTI 参数。使用等速测力计测量背部屈伸最大等长扭矩值[Nm],并计算屈伸强度比(E/F)。
皮尔逊相关系数;多元回归模型。
伸展与屈曲(E/F)比值与平均弥散度(MD)(P=0.019)、各向异性分数(RD)(P=0.02)和特征值(λ1:P=0.026,λ2:P=0.033,λ3:P=0.014)呈显著正相关。在多元回归模型中,竖脊肌的 λ3 和性别仍然是 E/F 的统计学显著预测因子(R 2 =0.42,P=0.003)。
DTI 可以识别与背部肌肉功能相关的肌肉微观结构差异,而 CSA 和 PDFF 则无法反映这些差异。DTI 可能具有潜在的能力,可用于跟踪背部肌肉组织成分的细微变化。
3 技术功效:2 级 J. 磁共振成像 2019;50:816-823.