Emi Hojo, Wiraphong Sucharit, Saranya Jaruchainiwat, Punthip Thammaroj, Julaluck Promsorn, Prathana Chowchuen, Kevin J Glaser, Uraiwan Chatchawan, Neil Roberts
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Except for two of the 108 individual datasets, when the agreement was moderate, there was substantial to perfect agreement between wave quality scores obtained by the two observers, with an identical mean value. Similarly, and again with only two exceptions, there was good to excellent agreement between the measurements of UT stiffness obtained by the two observers. UT stiffness values obtained when the acoustic waves were propagating along the principle muscle fibre direction were significantly higher than when the waves were propagating orthogonal to the principle muscle fibre direction at all vibration frequencies (p < 0.005), and only for the former was a significant dispersion effect observed whereby stiffness increased as frequency increased (p < 0.05). No significant asymmetry was observed in measurements of UT stiffness obtained for the left and right sides of the body (p = 0.29). 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引用次数: 0
摘要
本研究的目的是研究定位软柔性管为基础的致动器平行或正交于主要肌纤维方向的影响,对上斜方肌(UT)的刚度测量使用磁共振弹性成像(MRE)获得。使用三种不同的振动频率(60赫兹,80赫兹和100赫兹)和研究身体的左右两侧的效果也进行了研究。在1.5 T MRI系统上使用二维梯度回波(GRE) MRE序列获取相关的MRE数据集,并由两名观测者使用手动卡尺技术分析使用多模型直接反演(MMDI)产生的相应波图像。除了108个单独数据集中的两个,当一致性是中等时,两个观测者获得的波质量分数之间具有相同的平均值,具有实质性的完全一致性。同样,只有两个例外,两个观测者获得的UT刚度测量值之间存在良好到极好的一致性。在所有振动频率下,声波沿主肌纤维方向传播时的UT刚度值明显高于与主肌纤维方向正交传播时的UT刚度值(p
Magnetic Resonance Elastography of Upper Trapezius Muscle.
The goal of the present study was to investigate the effect of positioning a soft flexible tube-based actuator parallel or orthogonal to the principle muscle fibre direction, on measurements of the stiffness of upper trapezius (UT) muscle obtained using magnetic resonance elastography (MRE). The effects of using three different vibration frequencies (60 Hz, 80 Hz and 100 Hz) and studying left and right sides of the body were also investigated. The relevant MRE datasets were acquired on a 1.5 T MRI system using a 2D gradient-echo (GRE) MRE sequence, and corresponding wave images produced using multimodel direct inversion (MMDI) were analysed by two observers using the manual caliper technique. Except for two of the 108 individual datasets, when the agreement was moderate, there was substantial to perfect agreement between wave quality scores obtained by the two observers, with an identical mean value. Similarly, and again with only two exceptions, there was good to excellent agreement between the measurements of UT stiffness obtained by the two observers. UT stiffness values obtained when the acoustic waves were propagating along the principle muscle fibre direction were significantly higher than when the waves were propagating orthogonal to the principle muscle fibre direction at all vibration frequencies (p < 0.005), and only for the former was a significant dispersion effect observed whereby stiffness increased as frequency increased (p < 0.05). No significant asymmetry was observed in measurements of UT stiffness obtained for the left and right sides of the body (p = 0.29). In conclusion, the new soft and flexible tube-based actuator is comfortable and produced very good wave propagation in UT when positioned in either orientation. However, it is recommended for wave propagation to be induced in the principle fibre direction and there was found to be no advantage in using a vibration frequency above 60 Hz.
期刊介绍:
NMR in Biomedicine is a journal devoted to the publication of original full-length papers, rapid communications and review articles describing the development of magnetic resonance spectroscopy or imaging methods or their use to investigate physiological, biochemical, biophysical or medical problems. Topics for submitted papers should be in one of the following general categories: (a) development of methods and instrumentation for MR of biological systems; (b) studies of normal or diseased organs, tissues or cells; (c) diagnosis or treatment of disease. Reports may cover work on patients or healthy human subjects, in vivo animal experiments, studies of isolated organs or cultured cells, analysis of tissue extracts, NMR theory, experimental techniques, or instrumentation.