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夏尔巴人在小腿肌肉分级运动过程中比目鱼肌和腓肠肌的同步31P磁共振波谱分析

Simultaneous 31P MRS of the soleus and gastrocnemius in Sherpas during graded calf muscle exercise.

作者信息

Allen P S, Matheson G O, Zhu G, Gheorgiu D, Dunlop R S, Falconer T, Stanley C, Hochachka P W

机构信息

Department of Biomedical Engineering Sciences in Medicine, University of Alberta, Edmonton, Canada.

出版信息

Am J Physiol. 1997 Sep;273(3 Pt 2):R999-1007. doi: 10.1152/ajpregu.1997.273.3.R999.

Abstract

The observation that the amount of lactate formed during hypobaric hypoxia decreases with the severity of hypoxia has become known as the "lactate paradox." We used noninvasive 31P magnetic resonance spectroscopy (MRS) to further probe this problem and explore the nature of muscle metabolism during rest-exercise-recovery transitions in Sherpas indigenous to the high Himalayas of Nepal. MRS data were obtained using a whole body 1-m bore, 1.5-T Phillips Gyroscan spectrometer. Muscle-specific localization of MRS data acquisition was achieved by means of a modified image-selected in vivo spectroscopy sequence (ISIS). The spectra acquired from the medial and lateral gastrocnemius muscle, rich in fast-twitch fibers, were well constrained by selective excitation and by the boundary of the leg. The spectra from a third region contained signals predominantly from the soleus, a muscle formed mainly of slow-twitch fibers. We quantified relative concentration changes in phosphocreatine (PCr), Pi, and ATP during a series of calf muscle work bouts; free ADP concentrations were calculated on the assumption that the creatine phosphokinase reaction was always essentially at equilibrium. Hydrogen ion concentrations were calculated from the chemical shift of Pi, which represents the equilibrium between mono- and diprotonated phosphate. Plantar flexion was quantified using a calf muscle ergometer designed for operation within a 1-m whole body magnet. We found that the concentration of ATP was rigorously regulated and thus did not change despite large changes in ATP turnover rates required through exercise. The relative concentrations of PCr and Pi were linear functions of the percent maximum work rate of the lateral and medial gastrocnemius, but on transition to exercise the fractional concentration changes in these metabolites were much less than the fractional change in muscle ATP turnover rates. The relationship between muscle ATP turnover rate and free ADP concentration was complex; again, a kinetic order of 1 was not observed. In contrast to the gastrocnemius, the soleus muscle sustained much smaller changes in the concentrations of these crucial metabolites during rest-work-recovery transitions. Unlike the situation in most other muscles rich in fast-twitch fibers characterized by lactate-associated acidosis during muscle work, the intracellular pH in gastrocnemius of Sherpas was stable through these protocols, which is consistent with the low lactate production (i.e., with the lactate paradox) observed in indigenous highlanders.

摘要

在低压缺氧期间形成的乳酸量随缺氧严重程度降低这一观察结果,已被称为“乳酸悖论”。我们使用无创31P磁共振波谱(MRS)进一步探究这个问题,并探索尼泊尔高喜马拉雅地区原住民夏尔巴人在静息-运动-恢复转换过程中肌肉代谢的本质。MRS数据是使用一台全身1米孔径、1.5-T飞利浦Gyroscan光谱仪获得的。通过改良的体内光谱成像选择序列(ISIS)实现了MRS数据采集的肌肉特异性定位。从富含快肌纤维的腓肠肌内侧和外侧采集的光谱,通过选择性激发和腿部边界得到了很好的限制。来自第三个区域的光谱主要包含比目鱼肌的信号,比目鱼肌主要由慢肌纤维组成。我们在一系列小腿肌肉工作周期中量化了磷酸肌酸(PCr)、无机磷(Pi)和三磷酸腺苷(ATP)的相对浓度变化;游离二磷酸腺苷(ADP)浓度是在肌酸磷酸激酶反应始终基本处于平衡的假设下计算得出的。氢离子浓度是根据Pi的化学位移计算得出的,Pi的化学位移代表单质子化和双质子化磷酸盐之间的平衡。使用为在1米全身磁体中运行而设计的小腿肌肉测力计对跖屈进行量化。我们发现ATP的浓度受到严格调节,因此尽管运动所需的ATP周转率有很大变化,但ATP浓度并未改变。PCr和Pi的相对浓度是腓肠肌内侧和外侧最大工作率百分比的线性函数,但在转换到运动时,这些代谢物的分数浓度变化远小于肌肉ATP周转率的分数变化。肌肉ATP周转率与游离ADP浓度之间的关系很复杂;同样,未观察到一级动力学关系。与腓肠肌不同,比目鱼肌在静息-工作-恢复转换过程中,这些关键代谢物的浓度变化要小得多。与大多数其他富含快肌纤维的肌肉在肌肉工作期间以乳酸相关酸中毒为特征的情况不同,夏尔巴人腓肠肌的细胞内pH值在这些实验过程中保持稳定,这与在当地高地人中观察到的低乳酸产生(即乳酸悖论)一致。

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