Rehman Usman, Begue Gwenaelle, Ahmadi Armin, Taboga Paolo, Gamboa Jorge, Roshanravan Baback, Jue Thomas
Department of Biochemistry & Molecular Medicine, University of California Davis, Davis, CA 95616, USA.
Department of Kinesiology, California State University Sacramento, Sacramento, CA 95819-6073, USA.
Data Brief. 2024 Nov 7;57:111114. doi: 10.1016/j.dib.2024.111114. eCollection 2024 Dec.
Applying magnetic resonance methods to measure the metabolic response in exercise poses a technical challenge because the construction of the ergometer must use non-magnetic components and assess work in the confined space of a magnet bore. The present report details the fabrication of a non-magnetic ergometer for use in a standard Siemens 3 Tesla (T) spectrometer. Using the ergometer, researchers can measure the P magnetic resonance spectroscopy (MRS) signals during leg muscle exercise and exercise recovery. In particular, the phosphocreatine (PCr) kinetics during exercise recovery reflects the mitochondrial oxidative capacity, and the inorganic phosphate (P) signal tracks the cellular pH. The ergometer allows for the use of a personalized, and variable load that normalizes the work for all study participants regardless of their leg strength. The ergometer then enables a standardized MRS comparison of leg muscle bioenergetics.
应用磁共振方法来测量运动中的代谢反应面临技术挑战,因为测力计的构造必须使用非磁性部件,并在磁体孔的有限空间内评估工作量。本报告详细介绍了一种用于标准西门子3特斯拉(T)光谱仪的非磁性测力计的制造。使用该测力计,研究人员可以在腿部肌肉运动和运动恢复期间测量磷磁共振波谱(MRS)信号。特别是,运动恢复期间的磷酸肌酸(PCr)动力学反映了线粒体氧化能力,而无机磷酸盐(P)信号跟踪细胞pH值。该测力计允许使用个性化的可变负荷,使所有研究参与者的工作量标准化,而不论其腿部力量如何。然后,该测力计能够对腿部肌肉生物能量学进行标准化的MRS比较。