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Optical on-line running reconstruction of MR-images in the phase-scrambling Fourier-imaging technique

机译:相位加扰傅里叶成像技术对MR图像进行光学在线运行重建

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摘要

Recently, the use of magnetic-resonance-guided navigation to improve the safety and effectiveness of surgical procedures has shown great promise. The purpose of the present study was to develop and demonstrate an imaging strategy that allows surgeons to continue operating without delays caused by imaging. The phase-scrambling Fourier-imaging technique has two prominent characteristics: localized image reconstruction and holographic image reconstruction. The combination of these characteristics allows images to be observed even during the data-acquisition period, because the acquired signal is converted into a hologram and the image is reconstructed instantly in the coherent optical image-processing system. Experimental studies have shown that the phase-scrambling Fourier-imaging technique enables the motion of objects to be imaged more quickly than the standard fast imaging. The proposed running reconstruction strategy can be easily implemented in the well-established magnetic-resonance imaging equipment that is currently in use.
机译:近来,使用磁共振引导导航来改善外科手术的安全性和有效性已显示出巨大的希望。本研究的目的是开发和演示一种成像策略,该策略可以使外科医生继续手术,而不会因成像引起延迟。相位加扰傅里叶成像技术具有两个突出的特征:局部图像重建和全息图像重建。这些特征的结合使得即使在数据采集期间也可以观察到图像,这是因为所采集的信号被转换成全息图并且图像在相干光学图像处理系统中被立即重构。实验研究表明,与标准快速成像相比,相位加扰傅里叶成像技术可使物体的运动成像更快。所提出的运行重建策略可以在目前正在使用的完善的磁共振成像设备中轻松实现。

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