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首页> 外文期刊>Magnetic resonance in medicine: official journal of the Society of Magnetic Resonance in Medicine >Transverse relaxation and magnetization transfer in skeletal muscle: effect of pH.
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Transverse relaxation and magnetization transfer in skeletal muscle: effect of pH.

机译:骨骼肌的横向松弛和磁化转移:pH的影响。

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Exercise increases the intracellular T(2) (T(2,i)) of contracting muscles. The mechanism(s) for the T(2,i) increase have not been fully described, and may include increased intracellular free water and acidification. These changes may alter chemical exchange processes between intracellular free water and proteins. In this study, the hypotheses were tested that (a) pH changes T(2,i) by affecting the rate of magnetization transfer (MT) between free intracellular water and intracellular proteins, and (b) the magnitude of the T(2,i) effect depends on acquisition mode (localized or nonlocalized) and echo spacing. Frog gastrocnemius muscles were excised and their intracellular pH was either kept at physiological pH (7.0) or modified to model exercising muscle (pH 6.5). The intracellular transverse relaxation rate (R(2,i) = 1/T(2,i)) always decreased in the acidic muscles, but the changes were greater when measured using more rapid refocusing rates. The MT rate from the macromolecular proton pool to the free water proton pool, its reverse rate, and the spin-lattice relaxation rate of water decreased in acidic muscles. It is concluded that intracellular acidification alters the R(2,i) of muscle water in a refocusing rate-dependent manner, and that the R(2,i) changes are correlated with changes in the MT rate between macromolecules and free intracellular water.
机译:运动会增加收缩肌肉的细胞内T(2)(T(2,i))。 T(2,i)增加的机制尚未完全描述,可能包括细胞内游离水增加和酸化。这些变化可能会改变细胞内游离水和蛋白质之间的化学交换过程。在这项研究中,检验了以下假设:(a)pH通过影响游离细胞内水与细胞内蛋白质之间的磁化转移(MT)的速率来改变T(2,i),以及(b)T(2, i)效果取决于采集模式(局部或非局部)和回声间隔。切除腓肠肌,将其细胞内pH值保持在生理pH值(7.0)或修改以模拟运动肌肉(pH 6.5)。在酸性肌肉中,细胞内横向松弛率(R(2,i)= 1 / T(2,i))总是下降,但是当使用更快的重新聚焦率进行测量时,变化更大。在酸性肌肉中,从大分子质子池到自由水质子池的MT速率,其反向速率和水的自旋晶格弛豫速率降低。结论是细胞内酸化以重新聚焦速率依赖性方式改变肌肉水的R(2,i),并且R(2,i)的变化与大分子与游离细胞内水之间MT速率的变化相关。

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