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Adaptively variable frame-rate fluoroscopy with an ultra-fast digital x-ray tube based on carbon nanotube field electron emitters

机译:基于碳纳米管场电子发射器的超快速数字X射线管的自适应可变帧率荧光检查

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Fluoroscopy is a radiological technique that provides real-time x-ray viewing in interventional and angiographic procedures. In fluoroscopic procedures, there are several issues have to be solved, such as a risk of radiation exposure to the patients and operators and low image qualities by motion blur. To lower the radiation dose and motion blur, most of fluoroscopic systems provide a pulse-mode operation. However, conventional systems adopt filament-based thermionic analog x-ray tubes that generate relatively longer x-ray pulses than a few milliseconds due to intrinsic difficulty in modulating electron emissions, thus still have many problems of motion blur for fast objects, unnecessary x-ray radiation, and mismatched frame rate to the moving objects. In this work, we tried to solve these problems by suggesting an adaptively variable frame-rate fluoroscopy with an ultra-fast digital x-ray tube (DXT) based on carbon nanotube (CNT) field electron emitters. We first fabricated a vacuum-sealed CNT DXT and its monoblock with a power generator for the fluoroscopic system. Ultra-short and high-frequency x-ray pulses of up to 500 ns at 1 MHz was achieved by the direct control of electron emission through an active current-control unit. X-ray pulse frames from the CNT DXT with a tube voltage of 120 kV and current of 20 mA were adaptively modulated in the range of 1-30 Hz according to the motion of objects, greatly improving temporal resolution with a reduced radiation dose. The adaptively variable frame-rate fluoroscopy could pave the way for both reducing x-ray doses and improving temporal and spatial resolution.
机译:荧光检查是一种放射学技术,可在介入和血管造影过程中提供实时X射线查看。在荧光镜检查程序中,必须解决几个问题,例如放射线照射到患者和操作者的风险以及运动模糊导致的图像质量低下。为了降低辐射剂量和运动模糊,大多数荧光镜系统都提供了脉冲模式操作。然而,传统的系统采用基于灯丝的热电子模拟X射线管,由于调制电子发射的固有困难,其产生的X射线脉冲的产生时间相对于几毫秒要长,因此对于快速物体仍然存在运动模糊的问题,不必要的X-射线射线辐射,以及运动对象的帧速率不匹配。在这项工作中,我们试图通过提出一种基于碳纳米管(CNT)场电子发射器的超快速数字X射线管(DXT)进行自适应可变帧率荧光检查的方法来解决这些问题。我们首先为真空透视系统制造了带有电源发生器的真空密封CNT DXT及其单体。通过有源电流控制单元直接控制电子发射,可以在1 MHz处获得高达500 ns的超短和高频X射线脉冲。来自CNT DXT的X射线脉冲帧具有120 kV的管电压和20 mA的电流,可根据物体的运动在1-30 Hz的范围内进行自适应调制,从而大大提高了时间分辨率,并降低了辐射剂量。自适应可变帧率荧光检查技术可以为减少X射线剂量以及提高时间和空间分辨率铺平道路。

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