Valkovič Ladislav, Chmelík Marek, Meyerspeer Martin, Gagoski Borjan, Rodgers Christopher T, Krššák Martin, Andronesi Ovidiu C, Trattnig Siegfried, Bogner Wolfgang
High-Field MR Centre, Medical University of Vienna, Vienna, Austria.
Department of Biomedical Imaging and Image-Guided Therapy, Medical University of Vienna, Vienna, Austria.
NMR Biomed. 2016 Dec;29(12):1825-1834. doi: 10.1002/nbm.3662. Epub 2016 Nov 8.
Phosphorus MRSI ( P-MRSI) using a spiral-trajectory readout at 7 T was developed for high temporal resolution mapping of the mitochondrial capacity of exercising human skeletal muscle. The sensitivity and localization accuracy of the method was investigated in phantoms. In vivo performance was assessed in 12 volunteers, who performed a plantar flexion exercise inside a whole-body 7 T MR scanner using an MR-compatible ergometer and a surface coil. In five volunteers the knee was flexed (~60°) to shift the major workload from the gastrocnemii to the soleus muscle. Spiral-encoded MRSI provided 16-25 times faster mapping with a better point spread function than elliptical phase-encoded MRSI with the same matrix size. The inevitable trade-off for the increased temporal resolution was a reduced signal-to-noise ratio, but this was acceptable. The phosphocreatine (PCr) depletion caused by exercise at 0° knee angulation was significantly higher in both gastrocnemii than in the soleus (i.e. 64.8 ± 19.6% and 65.9 ± 23.6% in gastrocnemius lateralis and medialis versus 15.3 ± 8.4% in the soleus). Spiral-encoded P-MRSI is a powerful tool for dynamic mapping of exercising muscle oxidative metabolism, including localized assessment of PCr concentrations, pH and maximal oxidative flux with high temporal and spatial resolution.
利用7T螺旋轨迹读出的磷磁共振波谱成像(P-MRSI)技术被开发用于对运动中的人体骨骼肌线粒体容量进行高时间分辨率映射。在体模中研究了该方法的灵敏度和定位准确性。在12名志愿者中评估了其体内性能,这些志愿者在全身7T磁共振成像扫描仪内使用与磁共振兼容的测力计和表面线圈进行跖屈运动。在五名志愿者中,膝关节弯曲约60°,以将主要工作量从腓肠肌转移到比目鱼肌。与相同矩阵大小的椭圆相位编码MRSI相比,螺旋编码MRSI提供的映射速度快16至25倍,且具有更好的点扩散函数。时间分辨率提高的必然代价是信噪比降低,但这是可以接受的。在0°膝关节角度下运动引起的腓肠肌磷酸肌酸(PCr)消耗显著高于比目鱼肌(即外侧腓肠肌和内侧腓肠肌分别为64.8±19.6%和65.9±23.6%,而比目鱼肌为15.3±8.4%)。螺旋编码P-MRSI是一种强大的工具,可用于动态映射运动肌肉的氧化代谢,包括对PCr浓度、pH值和最大氧化通量进行具有高时间和空间分辨率的局部评估。