Grandinetti Jace, Zhong Yuncheng, Peng Yuting, Jia Xun
Innovative Technology Of Radiotherapy Computations and Hardware (iTORCH) Laboratory, Department of Radiation Oncology, University of Texas Southwestern Medical Center, Dallas, 75390, TX, USA.
Department of Radiation Oncology and Molecular Radiation Sciences, Johns Hopkins University, Baltimore, 21287, MD, USA.
Heliyon. 2024 Feb 19;10(4):e26251. doi: 10.1016/j.heliyon.2024.e26251. eCollection 2024 Feb 29.
Small animal radiation experiments use a dedicated hardware platform to deliver radiation to small animals to support pre-clinical radiobiological studies. Image guidance is critical to achieve experiment accuracy. MR-based image guidance became recently available in human radiation therapy by integrating an MR scanner with a medical linear accelerator. Our group is developing a small animal MR-guidance system for pre-clinical radiation studies using a unique low-field unilateral magnet design. In this paper, we reported our design, construction, and characterization of split gradient coils for the MRI scanner. The coils were designed to have a 4 cm gap to allow the radiation beam to pass through for radiation experiments. We designed the coil patterns by solving an optimization problem. We constructed the coils by printing molds for the designed coil patterns using 3D printing technology and wiring the coils following the pattern. We measured parameters of the coils to characterize their performance. The coils achieved a linear magnetic field throughout a 4 cm spherical region of interest. The slew rates were 8640 and 1970 , and the efficiencies were 1.2 and 0.21 for the Y-coil and X-coil, respectively. Preliminary imaging with the coils on our proposed system validates spatial encoding functions of the developed coils.
小动物辐射实验使用专门的硬件平台向小动物输送辐射,以支持临床前放射生物学研究。图像引导对于实现实验准确性至关重要。基于磁共振成像(MR)的图像引导最近通过将MR扫描仪与医用直线加速器集成,在人类放射治疗中得以应用。我们团队正在开发一种用于临床前放射研究的小动物MR引导系统,采用独特的低场单边磁体设计。在本文中,我们报告了用于MRI扫描仪的分裂梯度线圈的设计、构建和特性。这些线圈设计有4厘米的间隙,以便辐射束能够穿过进行辐射实验。我们通过解决一个优化问题来设计线圈图案。我们使用3D打印技术为设计好的线圈图案打印模具,并按照图案对线圈进行布线,从而构建了这些线圈。我们测量了线圈的参数以表征其性能。这些线圈在整个4厘米的球形感兴趣区域内实现了线性磁场。Y线圈和X线圈的 slew 率分别为8640和1970,效率分别为1.2和0.21。在我们提出的系统上使用这些线圈进行的初步成像验证了所开发线圈的空间编码功能。