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A dynamic micro-CT scanner based on a carbon nanotube field emission x-ray source.

机译:基于碳纳米管场发射X射线源的动态微型CT扫描仪。

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Current commercial micro-CT scanners have the capability of imaging objects ex vivo with high spatial resolution, but performing in vivo micro-CT on free-breathing small animals is still challenging because their physiological motions are non-periodic and much faster than those of humans. In this paper, we present a prototype physiologically gated micro-computed tomography (micro-CT) scanner based on a carbon nanotube field emission micro-focus x-ray source. The novel x-ray source allows x-ray pulses and imaging sequences to be readily synchronized and gated to non-periodic physiological signals from small animals. The system performance is evaluated using phantoms and sacrificed and anesthetized mice. Prospective respiratory-gated micro-CT images of anesthetized free-breathing mice were collected using this scanner at 50 ms temporal resolution and 6.2 lp mm(-1) at 10% system MTF. The high spatial and temporal resolutions of the micro-CT scanner make it well suited for high-resolution imaging of free-breathing small animals.
机译:当前的商用微型CT扫描仪具有以高空间分辨率离体成像物体的能力,但是对自由呼吸的小动物进行体内微型CT仍然具有挑战性,因为它们的生理运动是非周期性的并且比人类的运动快得多。在本文中,我们提出了一种基于碳纳米管场发射微焦点x射线源的原型生理门控微计算机断层扫描(micro-CT)扫描仪。新颖的X射线源使X射线脉冲和成像序列易于同步,并被选通到来自小型动物的非周期性生理信号。使用体模和处死并麻醉的小鼠评估系统性能。使用该扫描仪以50 ms的时间分辨率和6.2 lp mm(-1)的10%系统MTF收集了麻醉的自由呼吸小鼠的前瞻性呼吸门微CT图像。微型CT扫描仪的高空间和时间分辨率使其非常适合自由呼吸的小动物的高分辨率成像。

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