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在高性能梯度系统中,使用二次波闪光线圈的二次并发场的前景补偿
Afis Ajala1, Thomas K F Foo1, Seung-Kyun Lee1
1GE HealthCare, Technology & Innovation Center, Niskayuna, New York, USA.
一个新的校正线圈有效地减少了高性能MRI系统中的磁场误差. 这通过最大限度地减少模糊和信号损失来提高图像质量,特别是在距离梯度同心的较大距离时.
科学领域:
- 磁共振成像 (MRI) 是一种磁共振成像技术.
- 渐变线圈技术 渐变线圈技术
- 生物医学工程 生物医学工程
背景情况:
- 在MRI中,高性能梯度线圈会产生更强的并发磁场.
- 这些场所会导致信号丢失,模糊和相位错误等事物,特别是远离梯度同心.
- 现有的纠正这些错误的方法在图像重建过程中经常被应用.
研究的目的:
- 描述一种用于前景补偿二阶并发场的新型校正线圈.
- 为了评估这个线圈在3.0T的高性能单头梯度系统中的有效性.
主要方法:
- 开发一种可插入的,轴对称的二次场校正线圈.
- 使用幻影和健康志愿者的扫描来测试线圈的性能.
- 使用2D相对比 (PC) 和螺旋梯度回声 (GRE) 成像技术.
主要成果:
- 在螺旋式GRE和PC图像中显著减少模糊,相位错误和信号降解.
- 在PC采购中,100%和83%降低了特定的二级并发阶段错误.
- 在双面PC采集中,信号增强率高达968.9%.
- 在距离异心60mm的幻影螺旋GRE图像中,模糊度大约减少了40.2%.
结论:
- 开发的校正线圈有效地弥补了源头上的二级并发场诱导的相位错误.
- 这种潜在的补偿补充或可能取代收购后的软件纠正.
- 该技术提高了高性能MRI系统中的图像质量.
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