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Influence of muscle fiber orientation on water and metabolite relaxation times, magnetization transfer, and visibility in human skeletal muscle

机译:肌肉纤维取向对水和代谢物松弛时间,磁化传递以及人体骨骼肌可见性的影响

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PURPOSE\ud\udTo gain a deeper understanding of the influence of skeletal muscle fiber orientation on metabolite visibility, magnetization transfer from water, and water proton relaxation rates in (1) H MR spectra.\ud\udMETHODS\ud\udNon-water-suppressed MR spectroscopy was performed in tibialis anterior muscle (TA) of 10 healthy adults, with the TA oriented either parallel or at the magic angle to the 3T field. Spectra were acquired with metabolite-cycled PRESS, and water inversion from 50 to 2510 ms before excitation. Water proton T2 relaxation was sampled with STEAM with echo times from 12 to 272 ms.\ud\udRESULTS\ud\udApparent concentrations of total creatine (tCr), taurine, and trimethylammonium compounds were reduced by 29% to 67% when TA was parallel to B0 . Both tCr peak areas were strongly correlated to the methylene peak splitting. Magnetization transfer rates from water to tCr CH3 were not significantly different between orientations. Water T1 s were similar between orientations, but T2 s were statistically significantly shorter by 1 ms in the parallel orientation (P = 0.002).\ud\udCONCLUSION\ud\udMuscle metabolite visibilities in MR spectroscopy and water T2 times depend substantially on muscle fiber orientation relative to B0 . In contrast, magnetization transfer rates appear to depend on muscle composition, rather than fiber orientation. Magn Reson Med, 2015. © 2015 Wiley Periodicals, Inc.
机译:目的\ ud \ ud(1)H MR谱图深入了解骨骼肌纤维取向对代谢物可见度,水的磁化转移以及水质子弛豫率的影响。\ ud \ udMETHODS \ ud \ ud非水-在10名健康成年人的胫骨前肌(TA)中进行了MR抑制光谱分析,TA的方向与3T场平行或成魔角。用代谢物循环的PRESS采集光谱,并在激发前从50到2510 ms反转水。用STEAM采样水质子T2弛豫,回波时间为12到272 ms。\ ud \ ud结果\ ud \ ud当TA平行时,总肌酸(tCr),牛磺酸和三甲基铵化合物的表观浓度降低了29%至67%到B0。两个tCr峰面积都与亚甲基峰分裂密切相关。从水到tCr CH3的磁化转移速率在两个方向之间没有显着差异。方向上的水T1相似,但平行方向上的T2在统计学上显着缩短了1 ms(P = 0.002)。\ ud \ ud结论\ ud \ ud MR光谱中肌肉代谢产物的可见性和水T2的时间主要取决于肌肉纤维相对于B0的方向。相反,磁化传递速率似乎取决于肌肉组成,而不是取决于纤维的方向。 Magn Reson Med,2015年。©2015 Wiley Periodicals,Inc.

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