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A parallel imaging approach to wide-field MR microscopy

机译:并行成像方法进行大视野MR显微镜检查

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摘要

Magnetic resonance microscopy, suggested in the earliest papers on MRI, has always been limited by the low signal-to-noise ratio resulting from the small voxel size. Magnetic resonance microscopy has largely been enabled by the use of microcoils that provide the signal-to-noise ratio improvement required to overcome this limitation. Concomitant with the small coils is a small field-of-view, which limits the use of magnetic resonance microscopy as a histological tool or for imaging large regions in general. This article describes initial results in wide field-of-view magnetic resonance microscopy using a large array of narrow, parallel coils, which provides a signal-to-noise ratio enhancement as well as the ability to use parallel imaging techniques. Comparison images made between a volume coil and the proposed technique demonstrate reductions in imaging time of more than 100 with no loss in signal-to-noise ratio or resolution.
机译:MRI最早的论文中建议使用磁共振显微镜,这一直受到体素尺寸小导致信噪比低的限制。通过使用微线圈可以大大提高磁共振显微镜的性能,这些微线圈可提供克服该局限性所需的信噪比。伴随小线圈的是小的视场,这限制了磁共振显微镜作为组织学工具或通常用于大区域成像的用途。本文介绍了使用宽阵列的窄平行线圈在宽视场磁共振显微镜中的初步结果,该方法可提高信噪比并具有使用并行成像技术的能力。在体积线圈和提出的技术之间进行的比较图像显示,成像时间减少了100多倍,而信噪比或分辨率没有损失。

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