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First application of liquid-metal-jet sources for small-animal imaging: High-resolution CT and phase-contrast tumor demarcation

机译:用于小动物成像的液态金属喷射源的首先应用:高分辨率CT和相位对比肿瘤划分

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Purpose: Small-animal studies require images with high spatial resolution and high contrast due to the small scale of the structures. X-ray imaging systems for small animals are often limited by the microfocus source. Here, the authors investigate the applicability of liquid-metal-jet x-ray sources for such high-resolution small-animal imaging, both in tomography based on absorption and in soft-tissue tumor imaging based on in-line phase contrast. Methods: The experimental arrangement consists of a liquid-metal-jet x-ray source, the small-animal object on a rotating stage, and an imaging detector. The source-to-object and object-to-detector distances are adjusted for the preferred contrast mechanism. Two different liquid-metal-jet sources are used, one circulating a Ga/In/Sn alloy and the other an In/Ga alloy for higher penetration through thick tissue. Both sources are operated at 40-50 W electron-beam power with ??7 ??m x-ray spots, providing high spatial resolution in absorption imaging and high spatial coherence for the phase-contrast imaging. Results: High-resolution absorption imaging is demonstrated on mice with CT, showing 50 ??m bone details in the reconstructed slices. High-resolution phase-contrast soft-tissue imaging shows clear demarcation of mm-sized tumors at much lower dose than is required in absorption. Conclusions: This is the first application of liquid-metal-jet x-ray sources for whole-body small-animal x-ray imaging. In absorption, the method allows high-resolution tomographic skeletal imaging with potential for significantly shorter exposure times due to the power scalability of liquid-metal-jet sources. In phase contrast, the authors use a simple in-line arrangement to show distinct tumor demarcation of few-mm-sized tumors. This is, to their knowledge, the first small-animal tumor visualization with a laboratory phase-contrast system. ? 2013 American Association of Physicists in Medicine.
机译:目的:由于结构的小规模,小动物研究需要具有高空间分辨率和高对比度的图像。小型动物的X射线成像系统通常受到微焦源的限制。在此,作者研究了液态金属 - 射流X射线源的适用性,用于基于在线相位对比度的吸收和软组织肿瘤成像的断层扫描中的这种高分辨率小动物成像。方法:实验装置包括液体 - 金属 - 射流X射线源,旋转级上的小动物物体,以及成像检测器。针对优选的对比度机制调整源对象和对象对象距离。使用两种不同的液态金属喷射源,一个循环Ga / In / Sn合金,另一个循环in / ga合金,以通过厚组织渗透。两个来源以40-50W的电子束功率运行,其中7 ?? M X射线斑点,为相对造影成像提供高空间分辨率和高空间相干性。结果:高分辨率吸收成像在CT上对CT进行了说明,在重建的切片中显示50Ω骨细节。高分辨率相比和软组织成像显示出明显的MM大小肿瘤的分界,低于吸收的剂量远低得多。结论:这是全身小型动物X射线成像的液态金属喷射X射线源的第一次应用。在吸收中,该方法允许高分辨率断层骨骼成像,其具有显着较短的曝光时间,因为液态金属喷射源的功率可扩展性。在相比之下,作者使用简单的在线布置来显示少量肿瘤的明显肿瘤分界。这是他们的知识,具有实验室相对造影系统的第一小动物肿瘤可视化。还是2013年美国物理学家的医学协会。

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