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Measurement of muscle activity with magnetic resonance elastography.

机译:用磁共振弹性成像测量肌肉活动。

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Objective. To non-invasively determine muscle activity.Design. A correlation analysis study.Background. Electromyography is traditionally used to measure the electrical activity of a muscle and can be used to estimate muscle contraction intensity. This approach, however, is limited not only in terms of the volume of tissue that can be monitored, but must be invasive if deep lying muscles are studied. We wished to avoid these limitations and used magnetic resonance elastography in an attempt to non-invasively determine muscle activity. This novel approach uses a conventional MRI system. However, in addition to the imaging gradients, an oscillating, motion sensitizing field gradient is applied to detect mechanical waves that have been generated within the tissue. The wavelength correlates with the stiffness of the muscle and hence with the activity of the muscle.Methods. Six volunteers (mean age: 30.1 years, range: 27-36 years) without orthopedic or neuromuscular abnormalities, lay supine with their legswithin the coil of a MRI scanner. The wavelengths of mechanically generated shear waves in the tibialis anterior, medial and lateral head of the gastrocnemius and the soleus were measured as the subjects resisted ankle plantar-flexing (8.2 and 16.4 nm) and dorsi-flexing (20.2 and 40.4 nm) moments. The findings were then compared to EMG data collected under the same loading conditions.Results. Magnetic resonance elastography wavelengths were linearly correlated to the muscular activity as defined by electromyography. (TA, R(2)=0.89, P=0.02; MG, R(2)=0.82, P=0.05; LG, R(2)=0.88, P=0.03; S, R(2)=0.90, P=0.02)Conclusions. Magnetic resonance elastography may be a promising tool for the non-invasive determination of muscle activity.Relevance Magnetic resonance elastography has potential as the basis for a new non-invasive approach to study in vivo muscle function.
机译:目的。以无创方式确定肌肉活动。设计。相关分析研究。背景。传统上,肌电图用于测量肌肉的电活动,并可用于估计肌肉的收缩强度。但是,这种方法不仅限于可监测的组织体积,而且如果研究深层肌肉也必须是侵入性的。我们希望避免这些限制,并尝试使用磁共振弹性成像技术以非侵入性的方式确定肌肉活动。这种新颖的方法使用常规的MRI系统。但是,除了成像梯度之外,还应用了振动的运动敏感场梯度来检测组织内已产生的机械波。波长与肌肉的硬度有关,因此与肌肉的活动有关。六名没有骨科或神经肌肉异常的志愿者(平均年龄:30.1岁,范围:27-36岁)将他们的腿仰卧在MRI扫描仪的线圈中。在受试者抵抗踝emi屈(8.2和16.4 nm)和背屈(20.2和40.4 nm)时,测量了腓肠肌的胫骨前,内侧和外侧头的机械产生的剪切波的波长。然后将这些发现与在相同载荷条件下收集的EMG数据进行比较。磁共振弹性成像波长与肌电图所定义的肌肉活动线性相关。 (TA,R(2)= 0.89,P = 0.02; MG,R(2)= 0.82,P = 0.05; LG,R(2)= 0.88,P = 0.03; S,R(2)= 0.90,P = 0.02)结论。磁共振弹性成像可能是无创测定肌肉活动的有前途的工具。相关性磁共振弹性成像有潜力作为研究体内肌肉功能的新的无创方法的基础。

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