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Ability of magnetic resonance elastography to assess taut bands.

机译:磁共振弹性成像评估绷紧带的能力。

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BACKGROUND: Myofascial taut bands are central to diagnosis of myofascial pain. Despite their importance, we still lack either a laboratory test or imaging technique capable of objectively confirming either their nature or location. This study explores the ability of magnetic resonance elastography to localize and investigate the mechanical properties of myofascial taut bands on the basis of their effects on shear wave propagation. METHODS: This study was conducted in three phases. The first involved the imaging of taut bands in gel phantoms, the second a finite element modeling of the phantom experiment, and the third a preliminary evaluation involving eight human subjects-four of whom had, and four of whom did not have myofascial pain. Experiments were performed with a 1.5T magnetic resonance imaging scanner. Shear wave propagation was imaged and shear stiffness was reconstructed using matched filtering stiffness inversion algorithms. FINDINGS: The gel phantom imaging and finite element calculation experiments supported our hypothesis that taut bands can be imaged based on its outstanding shear stiffness. The preliminary human study showed a statistically significant 50-100% (P=0.01) increase of shear stiffness in the taut band regions of the involved subjects relative to that of the controls or in nearby uninvolved muscle. INTERPRETATION: This study suggests that magnetic resonance elastography may have a potential for objectively characterizing myofascial taut bands that have been up to now detectable only by the clinician's fingers.
机译:背景:肌筋膜张紧带对肌筋膜痛的诊断至关重要。尽管它们很重要,但我们仍然缺乏能够客观确定其性质或位置的实验室测试或成像技​​术。这项研究探讨了磁共振弹性成像定位和研究肌筋膜绷紧带的力学性能的能力,基于它们对剪切波传播的影响。方法:本研究分三个阶段进行。第一个涉及凝胶体模中绷紧带的成像,第二个涉及体模实验的有限元建模,第三个涉及涉及八名人类受试者的初步评估,其中四人患有肌纤维痛,其中四人没有肌筋膜疼痛。用1.5T磁共振成像扫描仪进行实验。使用匹配的滤波刚度反演算法对剪切波传播进行成像并重建刚度。结果:凝胶体模成像和有限元计算实验支持了我们的假设,即基于其出色的剪切刚度可以对绷紧带进行成像。初步的人体研究显示,与对照组或附近未受累的肌肉相比,受累受试者的绷紧带区域的剪切刚度在统计学上具有显着的50-100%(P = 0.01)的增加。解释:这项研究表明,磁共振弹性成像可能具有客观表征肌筋膜张紧带的潜力,这些束带迄今为止只能由临床医生的手指才能检测到。

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