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Improvement of one-dimensional gradient shimming method in nuclear magnetic resonance experiments

机译:核磁共振实验中一维梯度匀场方法的改进

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Nuclear magnetic resonance (NMR) plays an important role in the fields of physics, chemistry, biology and medicine. The homogeneity of the magnetic field is very significant for NMR experiment. Based on the principle of field mapping, gradient shimming is an efficient method to achieve a homogeneous magnetic field. Reflecting accurately the spatial magnetic field distribution produced by every shim coil, gradient shimming can optimize the homogeneity efficiently and quickly. In this paper, one-dimensional gradient shimming method was studied, and the corresponding computational process was improved. Experiments were done on the NMR spectrometer, and the results show that the improved algorithm operates more efficiently and still works in a great inhomogeneous magnetic field.
机译:核磁共振(NMR)在物理,化学,生物学和医学领域中发挥着重要作用。磁场的均匀性对于NMR实验非常重要。基于场映射原理,梯度匀场是一种实现均匀磁场的有效方法。准确地反映每个匀场线圈产生的空间磁场分布,梯度匀场可以高效,快速地优化均匀性。本文研究了一维梯度匀场方法,并改进了相应的计算过程。在NMR光谱仪上进行了实验,结果表明改进的算法可以更有效地运行,并且仍然可以在很大的非均匀磁场中工作。

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