Raval Shailesh B, Zhao Tiejun, Krishnamurthy Narayanan, Santini Tales, Britton Cynthia, Gorantla Vijay S, Ibrahim Tamer S
Department of Bioengineering, University of Pittsburgh, Pittsburgh, Pennsylvania, USA.
Department of Radiology, University of Pittsburgh, Pittsburgh, Pennsylvania, USA.
NMR Biomed. 2016 Dec;29(12):1768-1779. doi: 10.1002/nbm.3582. Epub 2016 Nov 3.
The purpose of this study is to develop and evaluate a custom-designed 7 T MRI coil and explore its use for upper extremity applications. An RF system composed of a transverse electromagnetic transmit coil and an eight-channel receive-only array was developed for 7 T upper extremity applications. The RF system was characterized and evaluated using scattering parameters and B mapping. Finite difference time domain simulations were performed to evaluate the B field distribution and specific absorption rate for the forearm region of the upper extremity. High-resolution 7 T images were acquired and compared with those at 3 T. The simulation and experimental results show very good B field homogeneity across the forearm. High-resolution images of musculotendinous, osseocartilaginous, and neurovascular structures in the upper extremity are presented with T volumetric interpolated breath-hold examination, T double-echo steady state, T * susceptibility weighted imaging (SWI), diffusion tensor imaging, and time-of-flight sequences. Comparison between 3 T and 7 T is shown. Intricate contextual anatomy can be delineated in synovial, fibrocartilaginous, interosseous, and intraosseous trabecular structures of the forearm, as well as palmar and digital vascular anatomy (including microvascular detail in SWI). Ultra-high-field 7 T imaging holds great potential in improving the sensitivity and specificity of upper extremity imaging, especially in wrist and hand pathology secondary to bone, ligament, nerve, vascular, and other soft or hard tissue etiology.
本研究的目的是开发并评估一种定制设计的7T磁共振成像(MRI)线圈,并探索其在上肢应用中的用途。为7T上肢应用开发了一个由横向电磁发射线圈和八通道仅接收阵列组成的射频(RF)系统。使用散射参数和B映射对该RF系统进行了表征和评估。进行了有限差分时域模拟,以评估上肢前臂区域的B场分布和比吸收率。采集了高分辨率的7T图像,并与3T图像进行了比较。模拟和实验结果表明,前臂的B场均匀性非常好。通过三维容积插值屏气检查、T2加权双回波稳态、T2*加权磁敏感加权成像(SWI)、扩散张量成像和时间飞跃序列,展示了上肢肌肉肌腱、骨软骨和神经血管结构的高分辨率图像。给出了3T和7T图像的对比。在前臂的滑膜、纤维软骨、骨间和骨内小梁结构以及手掌和手指血管解剖结构(包括SWI中的微血管细节)中,可以勾勒出复杂的局部解剖结构。超高场7T成像在提高上肢成像的敏感性和特异性方面具有巨大潜力,尤其是在继发于骨、韧带、神经、血管及其他软硬组织病因的手腕和手部病变中。