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Integrated parallel reception, excitation, and shimming (iPRES)

机译:集成的并行接收,激励和匀场(iPRES)

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Purpose: To develop a new concept for a hardware platform that enables integrated parallel reception, excitation, and shimming. Theory: This concept uses a single coil array rather than separate arrays for parallel excitation/reception and B0 shimming. It relies on a novel design that allows a radiofrequency current (for excitation/reception) and a direct current (for B0 shimming) to coexist independently in the same coil. Methods: Proof-of-concept B0 shimming experiments were performed with a two-coil array in a phantom, whereas B0 shimming simulations were performed with a 48-coil array in the human brain. Results: Our experiments show that individually optimized direct currents applied in each coil can reduce the B0 root-mean-square error by 62-81% and minimize distortions in echo-planar images. The simulations show that dynamic shimming with the 48-coil integrated parallel reception, excitation, and shimming array can reduce the B0 root-mean-square error in the prefrontal and temporal regions by 66-79% as compared with static second-order spherical harmonic shimming and by 12-23% as compared with dynamic shimming with a 48-coil conventional shim array. Conclusion: Our results demonstrate the feasibility of the integrated parallel reception, excitation, and shimming concept to perform parallel excitation/reception and B0 shimming with a unified coil system as well as its promise for in vivo applications.
机译:目的:为硬件平台开发一个新概念,以实现集成的并行接收,激励和匀场。理论:此概念使用单个线圈阵列而不是单独的阵列进行并行激励/接收和B0匀场。它依赖于一种新颖的设计,该设计允许射频电流(用于激励/接收)和直流电流(用于B0匀场)独立地共存于同一线圈中。方法:用幻影中的两线圈阵列进行概念验证的B0匀场实验,而在人脑中使用48线圈阵列进行B0匀场模拟。结果:我们的实验表明,在每个线圈中施加的单独优化的直流电可以将B0均方根误差减小62-81%,并使回波平面图像中的失真最小。仿真结果表明,与静态二阶球谐函数相比,采用48线圈集成并行接收,激励和匀场阵列的动态匀场可以将前额叶和颞叶区域的B0均方根误差降低66-79%与采用48线圈的传统匀场阵列进行动态匀场相比,匀场误差降低了12-23%。结论:我们的结果证明了集成的并行接收,激励和匀场概念在具有统一线圈系统的情况下执行并行激励/接收和B0匀场的可行性,以及其在体内应用的前景。

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