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首页> 外文期刊>Journal of magnetic resonance imaging: JMRI >Bone matrix imaged in vivo by water- and fat-suppressed proton projection MRI (WASPI) of animal and human subjects.
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Bone matrix imaged in vivo by water- and fat-suppressed proton projection MRI (WASPI) of animal and human subjects.

机译:通过水和脂肪抑制的动物和人类受试者的质子投射MRI(WASPI)在体内成像的骨基质。

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PURPOSE: To demonstrate water- and fat-suppressed proton projection MRI (WASPI) in a clinical scanner to visualize the solid bone matrix in animal and human subjects. MATERIALS AND METHODS: Pig bone specimens and polymer pellets were used to optimize the WASPI method in terms of soft-tissue suppression, image resolution, signal-to-noise ratio, and scan time on a 3T MRI scanner. The ankles of healthy 2-3-month-old live Yorkshire pigs were scanned with the optimized method. The method was also applied to the wrists of six healthy adult human volunteers to demonstrate the feasibility of the WASPI method in human subjects. A transmit/receive coil built with proton-free materials was utilized to produce a strong B(1) field. A fast transmit/receive switch was developed to reduce the long receiver dead time that would otherwise obscure the signals. RESULTS: Clear 3D WASPI images of pig ankles and human wrists, showing only the solid bone matrix and other tissues with high solid content (eg, tendons), with a spatial resolution of 2.0 mm in all three dimensions were obtained in as briefly as 12 minutes. CONCLUSION: WASPI of the solid matrix of bone in humans and animals in vivo is feasible.
机译:目的:在临床扫描仪中演示水和脂肪抑制的质子投射MRI(WASPI),以可视化动物和人类受试者的固体骨基质。材料与方法:在3T MRI扫描仪的软组织抑制,图像分辨率,信噪比和扫描时间方面,使用猪骨标本和聚合物颗粒优化WASPI方法。用优化的方法扫描了健康的2至3个月大的约克郡活猪的脚踝。该方法还应用于六名健康成人志愿者的手腕,以证明WASPI方法在人类受试者中的可行性。用无质子材料制成的发射/接收线圈用于产生强B(1)场。开发了一种快速发送/接收开关,以减少较长的接收器停滞时间,否则将使信号模糊。结果:猪脚踝​​和人腕的清晰3D WASPI图像,仅显示了在12个维度上仅显示了固体骨架和其他具有高固体含量(例如,腱)的组织,所有三个维度的空间分辨率均为2.0 mm分钟。结论:在人和动物体内进行骨固体基质的WASPI是可行的。

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