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在不同膝关节角度的跖屈运动期间进行动态多体素定位质子磁共振波谱分析。

Dynamic multivoxel-localized P MRS during plantar flexion exercise with variable knee angle.

作者信息

Niess Fabian, Fiedler Georg B, Schmid Albrecht I, Laistler Elmar, Frass-Kriegl Roberta, Wolzt Michael, Moser Ewald, Meyerspeer Martin

机构信息

Center for Medical Physics and Biomedical Engineering, Medical University of Vienna, Austria.

Highfield MR Center, Medical University of Vienna, Austria.

出版信息

NMR Biomed. 2018 Jun;31(6):e3905. doi: 10.1002/nbm.3905. Epub 2018 Mar 26.

Abstract

Exercise studies investigating the metabolic response of calf muscles using P MRS are usually performed with a single knee angle. However, during natural movement, the distribution of workload between the main contributors to force, gastrocnemius and soleus is influenced by the knee angle. Hence, it is of interest to measure the respective metabolic response of these muscles to exercise as a function of knee angle using localized spectroscopy. Time-resolved multivoxel P MRS at 7 T was performed simultaneously in gastrocnemius medialis and soleus during rest, plantar flexion exercise and recovery in 12 healthy volunteers. This experiment was conducted with four different knee angles. PCr depletions correlated negatively with knee angle in gastrocnemius medialis, decreasing from 79±14 % (extended leg) to 35±23 %(∼40°), and positively in soleus, increasing from 20±21 % to 36±25 %; differences were significant. Linear correlations were found between knee angle and end-exercise PCr depletions in gastrocnemius medialis (R =0.8) and soleus (R =0.53). PCr recovery times and end-exercise pH changes that correlated with PCr depletion were consistent with the literature in gastrocnemius medialis and differences between knee angles were significant. These effects were less pronounced in soleus and not significant for comparable PCr depletions. Maximum oxidative capacity calculated for all knee angles was in excellent agreement with the literature and showed no significant changes between different knee angles. In conclusion, these findings confirm that plantar flexion exercise with a straight leg is a suitable paradigm, when data are acquired from gastrocnemius only (using either localized MRS or small surface coils), and that activation of soleus requires the knee to be flexed. The present study comprises a systematic investigation of the effects of the knee angle on metabolic parameters, measured with dynamic multivoxel P MRS during muscle exercise and recovery, and the findings should be used in future study design.

摘要

使用磷磁共振波谱(P MRS)研究小腿肌肉代谢反应的运动研究通常在单一膝关节角度下进行。然而,在自然运动过程中,主要发力肌肉腓肠肌和比目鱼肌之间的负荷分配会受到膝关节角度的影响。因此,利用局部光谱法测量这些肌肉在不同膝关节角度下运动时各自的代谢反应具有重要意义。在12名健康志愿者休息、跖屈运动及恢复过程中,使用7T的时间分辨多体素磷磁共振波谱同时对内侧腓肠肌和比目鱼肌进行检测。该实验在四个不同的膝关节角度下进行。内侧腓肠肌中磷酸肌酸(PCr)消耗与膝关节角度呈负相关,从伸腿时的79±14%降至约40°时的35±23%;比目鱼肌中则呈正相关,从20±21%增至36±25%;差异具有统计学意义。在内侧腓肠肌(R =0.8)和比目鱼肌(R =0.53)中发现膝关节角度与运动结束时PCr消耗之间存在线性相关性。与PCr消耗相关的PCr恢复时间和运动结束时的pH变化在内侧腓肠肌中与文献一致,膝关节角度之间的差异具有统计学意义。这些效应在比目鱼肌中不太明显,对于相当的PCr消耗来说差异不显著。所有膝关节角度下计算出的最大氧化能力与文献高度一致,且在不同膝关节角度之间无显著变化。总之,这些发现证实,当仅从腓肠肌获取数据(使用局部磁共振波谱或小表面线圈)时,直腿跖屈运动是一种合适的范例,而比目鱼肌的激活需要膝关节屈曲。本研究系统调查了膝关节角度对肌肉运动及恢复过程中通过动态多体素磷磁共振波谱测量的代谢参数的影响,这些发现应在未来的研究设计中加以应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b945/6001778/bf3d0ed709ee/NBM-31-na-g001.jpg

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