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人体肌肉的体内31P核磁共振:运动时的瞬态模式。

In vivo 31P-NMR in human muscle: transient patterns with exercise.

作者信息

Molé P A, Coulson R L, Caton J R, Nichols B G, Barstow T J

出版信息

J Appl Physiol (1985). 1985 Jul;59(1):101-4. doi: 10.1152/jappl.1985.59.1.101.

Abstract

Evaluation of dynamic changes in pH and concentrations of adenosine 5'-triphosphate (ATP), phosphocreatine (PCr), and inorganic phosphate (Pi) during the transition from rest to steady-state exercise in the human has been methodologically limited. Previous work has relied on muscle biopsy of exercising subjects at different times in different exercise bouts. Chemical evaluation of metabolites has been hampered by continuing change in metabolic concentration during the biopsy procedure. Recently, Fourier-transformed 31P nuclear magnetic resonance (31P-NMR), employing surface coils, has made evaluation of phosphorus metabolites possible by noninvasive atraumatic means in human muscle. Relative concentrations of PCr, Pi, and ATP, together with pH, have been obtained with 31P-NMR from the flexor digitorum superficialis muscle on two occasions in four adult men during the transition from rest to exercise. [PCr] rapidly fell and was mirrored by a rise in [Pi]. The former temporarily exceeded the latter with the discrepancy apparently being absorbed by a transient rise in [ATP], which was itself mirrored by alteration in [H+].

摘要

在人体从静息状态过渡到稳态运动的过程中,对pH值以及三磷酸腺苷(ATP)、磷酸肌酸(PCr)和无机磷酸盐(Pi)浓度的动态变化进行评估,在方法上存在局限性。以往的研究依赖于在不同运动时段对运动受试者进行肌肉活检。在活检过程中,代谢物浓度持续变化,这妨碍了对代谢物的化学评估。最近,采用表面线圈的傅里叶变换31P核磁共振(31P-NMR)技术,使得通过无创、无创伤的方法对人体肌肉中的磷代谢物进行评估成为可能。在四名成年男性从静息状态过渡到运动状态的过程中,两次利用31P-NMR从其指浅屈肌中获取了PCr、Pi和ATP的相对浓度以及pH值。[PCr]迅速下降,同时[Pi]上升,前者暂时超过后者,差异显然被[ATP]的短暂上升所吸收,而[ATP]的变化又反映在[H+]的变化上。

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