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跑步者肌肉活动的18F-FDG PET成像

18F-FDG PET imaging of muscle activity in runners.

作者信息

Tashiro M, Fujimoto T, Itoh M, Kubota K, Fujiwara T, Miyake M, Watanuki S, Horikawa E, Sasaki H, Ido T

机构信息

Division of Nuclear Medicine, Cyclotron and Radioisotope Center, Tohoku University, Sendai, Japan.

出版信息

J Nucl Med. 1999 Jan;40(1):70-6.

PMID:9935060
Abstract

UNLABELLED

PET with three-dimensional data acquisition using 18F-fluorodeoxyglucose (FDG) was applied to evaluate skeletal muscle activity in runners.

METHODS

Seven healthy adult male volunteers were studied. They ran for a total of 35 min, 15 min before and 20 min after intravenous injection of FDG. Another 7 adult male control subjects were also examined at rest. Images obtained through a set of whole-body PET scans were analyzed. Regions of interest (ROIs) were manually drawn on images of muscles of both thighs, legs and feet, and the standardized uptake ratio (SUR) and total radioactivity distribution (TRD) for each region were calculated.

RESULTS

The work load was below the anaerobic threshold. SUR of foot, leg and thigh were low at rest but during running increased 5.19, 4.30 and 1.74 times, respectively. The SUR of posterior-to- anterior compartment of the leg was 1.1+/-0.1 at rest and 1.6+/-0.5 (P < 0.01) during running. The laterality index of both SUR and TRD changed significantly only in the foot of the dominant side during running. TRD of the leg, less than half that of the thigh at rest, became equivalent to that of the thigh during running. TRD of the foot did not change significantly.

CONCLUSION

Sole muscles showed highest metabolic activation per unit volume during running, which was higher in the dominant side. Comparison of whole muscle activity during running indicated the highest metabolic activation was in the posterior compartment of the leg, whereas thigh muscles showed relatively little changes during running. Our data indicate that whole-body FDG PET, especially three-dimensional data acquisition, is a useful tool for the investigation of muscular activity during exercise.

摘要

未标注

使用18F-氟脱氧葡萄糖(FDG)进行三维数据采集的正电子发射断层扫描(PET)被用于评估跑步者的骨骼肌活动。

方法

对7名健康成年男性志愿者进行了研究。他们总共跑步35分钟,在静脉注射FDG前15分钟和注射后20分钟跑步。另外7名成年男性对照受试者也在静息状态下接受检查。对通过一组全身PET扫描获得的图像进行分析。在双侧大腿、小腿和足部肌肉的图像上手动绘制感兴趣区域(ROI),并计算每个区域的标准化摄取值(SUR)和总放射性分布(TRD)。

结果

工作负荷低于无氧阈值。足部、小腿和大腿的SUR在静息时较低,但在跑步过程中分别增加了5.19倍、4.30倍和1.74倍。小腿后前肌间隔的SUR在静息时为1.1±0.1,跑步时为1.6±0.5(P<0.01)。SUR和TRD的侧性指数仅在跑步时优势侧足部有显著变化。小腿的TRD在静息时不到大腿的一半,跑步时与大腿相当。足部的TRD没有显著变化。

结论

在跑步过程中,足底肌肉每单位体积显示出最高的代谢激活,优势侧更高。跑步过程中全肌活动的比较表明最高的代谢激活发生在小腿后肌间隔,而大腿肌肉在跑步过程中变化相对较小。我们的数据表明,全身FDG PET,尤其是三维数据采集,是研究运动中肌肉活动的有用工具。

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