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Nuclear spin noise imaging

机译:核自旋噪声成像

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NMR images were obtained from the proton spin noise signals of a water-containing phantom, which was placed in the highly tuned, low-noise resonant circuit of a cryogenically cooled NMR probe in the presence of systematically varied magnetic field gradients. The spatially resolved proton spin density was obtained from the raw signal by a modified projection-reconstruction protocol. Although spin noise imaging is inherently less sensitive than conventional magnetic resonance imaging, it affords an entirely noninvasive visualization of the interior of opaque objects or subjects. Thus, tomography becomes possible even when neither x-ray nor radio frequency radiation can be applied for technical or safety reasons.
机译:从含水模型的质子自旋噪声信号获得NMR图像,将其放置在低温冷却的NMR探针的高度调谐,低噪声的谐振电路中,该磁场存在系统变化的磁场梯度。通过修改的投影-重建协议从原始信号获得空间分辨的质子自旋密度。尽管自旋噪声成像固有地不如常规磁共振成像敏感,但是它提供了对不透明物体或对象内部的完全无创可视化。因此,即使由于技术或安全原因而无法使用X射线或射频辐射时,层析成像也变得可能。

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