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In vivo microscopic X-ray imaging in rat and mouse using synchrotron radiation

机译:在大鼠和鼠标中使用同步辐射的体内微观X射线成像

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A preclinical laboratory animal imaging modality similar to microangiography, with spatial resolution as high as 6 μm, has been developed at SPring-8 using an X-ray direct-conversion type detector incorporating an X-ray SATICON pickup tube. The imaging modality is intended to provide a basic understanding of disease mechanisms. In synchrotron radiation radiography, a long source-to-object distance and a small source spot can produce high-resolution images with spatial resolution in the micrometer range. Synchrotron radiation microangiography presents the main advantage of depicting the anatomy of small blood vessels with tens of micrometers' diameter. We performed cerebral microangiography in rats and mice and particularly undertook radiographical evaluation of changes in small arteries located deep in the brain; such vessels had not been observed and studied previously. Moreover, an X-ray direct-conversion type solid-state imager with spatial resolution in the micrometer range is being designed for large field-of-view imaging. This study is also intended to clarify requirements related to specifications of prospective solid-state image sensors.
机译:一种突出的实验室动物成像模型,类似于微囊造影,具有高达6μm的空间分辨率,在弹簧-8使用X射线直接转换型检测器开发了X射线SATICON拾取管。成像模态旨在提供对疾病机制的基本理解。在同步辐射放射线照相中,长源到物距和小源点可以在微米范围内产生具有空间分辨率的高分辨率图像。同步辐射微观造影显示描绘小血管的解剖学的主要优点是具有数十个微米直径的。我们对大鼠和小鼠进行了脑微型造影,特别是对大脑深处的小动脉的变化进行了射线图评估;此类血管尚未观察和研究过。此外,千分尺范围内具有空间分辨率的X射线直转换型固态成像器用于大型视野成像。本研究还旨在阐明与预期固态图像传感器的规范相关的要求。

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