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The relationship between the transverse and longitudinal nuclear magnetic resonance relaxation rates of muscle water.

机译:肌肉水的横向和纵向核磁共振弛豫速率之间的关系。

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摘要

Whole frog sartorius and gastrocnemius muscles were incubated in Ringer's solutions, either unenriched or enriched with H2 17Oor 2D2O. Subsequently, the rates of transverse (1/T2) and of longitudinal (1/T1) nuclear magnetic relaxation were measured for 17O, 2D, and 1H at room temperature and at 8.1 MHz. The ratio (T1/T2) for 17O was measured to be approximately 1.5-2.0, close to the value roughly estimated from the Larmor frequency dependence of 1/T1 alone over the range 4.3-8.1 MHz. On the other hand (T1/T2) for 2D and 1H were both measured to lie in the range 9-11. Insofar as the entire 17O signal was detected, the data indicate the presence of an exchange mechanism between the major fraction of intracellular water and a minor fraction characterized by enhanced rates of relaxation. Possible molecular mechanisms are presented.
机译:在林格氏溶液中孵育完整的青蛙缝线肌和腓肠肌,不添加或不添加H2 17O或2D2O。随后,在室温和8.1 MHz频率下分别测量了17O,2D和1H的横向(1 / T2)和纵向(1 / T1)核磁弛豫率。测得的17O的比率(T1 / T2)约为1.5-2.0,接近在4.3-8.1 MHz范围内根据单独的1 / T1的拉莫尔频率依赖性大致估算的值。另一方面,测得的2D和1H的(T1 / T2)都在9-11范围内。就检测到整个17 O信号而言,数据表明在细胞内水的主要部分和以松弛率提高为特征的次要部分之间存在交换机制。提出了可能的分子机制。

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