首页> 外文会议>Physiology, Function, and Structure from Medical Images pt.1; Progress in Biomedical Optics and Imaging; vol.7,no.29 >In Vivo Micro-CT Imaging of the Murine Lung via a Computer Controlled Intermittent Iso-Pressure Breath Hold (IIBH) Technique
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In Vivo Micro-CT Imaging of the Murine Lung via a Computer Controlled Intermittent Iso-Pressure Breath Hold (IIBH) Technique

机译:通过计算机控制的间歇性等压呼吸保持(IIBH)技术对小鼠肺进行体内Micro-CT成像

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Micro-CT, a technique for imaging small objects at high resolution using micro focused x-rays, is becoming widely available for small animal imaging. With the growing number of mouse models of pulmonary pathology, there is great interest in following disease progression and evaluating the alteration in longitudinal studies. Along with the high resolution associated with micro CT comes increased scanning times, and hence minimization of motion artifacts is required. We propose a new technique for imaging mouse lungs in vivo by inducing an intermittent iso-pressure breath hold (IIBH) with a fixed level of positive airway pressure during image acquisition, to decrease motion artifacts and increase image resolution and quality. Mechanical ventilation of the respiratory system for such a setup consists of three phases, 1) tidal breathing (hyperventilated), 2) a breath hold during a fixed level of applied positive airway pressure, 3) periodic deep sighs. Image acquisition is triggered over the stable segment of the IIBH period. Comparison of images acquired from the same mouse lung using three imaging techniques (normal breathing / no gating, normal breathing with gating at End Inspiration (EI) and finally the IIBH technique) demonstrated substantial improvements in resolution and quality when using the IIBH gating. Using IIBH triggering the total image acquisition time increased from 15 minutes to 35 minutes, although total x-ray exposure time and hence animal dosage remains the same. This technique is an important step in providing high quality lung imaging of the mouse in vivo, and will provide a good foundation for future longitudinal studies.
机译:Micro-CT是一种使用微聚焦X射线以高分辨率对小物体成像的技术,现已广泛用于小型动物成像。随着越来越多的肺部病理学小鼠模型的出现,人们对关注疾病进展和评估纵向研究的改变产生了浓厚的兴趣。随着与微CT相关的高分辨率的增加,扫描时间也随之增加,因此需要最大限度地减少运动伪影。我们提出一种新技术,通过在图像采集过程中诱导具有固定水平的气道正压的间歇性等压屏气(IIBH),在体内成像小鼠肺部,以减少运动伪像并提高图像分辨率和质量。对于这种设置,呼吸系统的机械通风包括三个阶段:1)潮气呼吸(换气过度),2)在固定水平的正气道正压作用下屏住呼吸,3)周期性深呼吸。在IIBH周期的稳定时间内触发图像采集。使用三种成像技术(正常呼吸/无门控,在呼气末(EI)进行门控的正常呼吸以及最终的IIBH技术)从同一小鼠肺部采集的图像的比较表明,使用IIBH门控时,分辨率和质量有了显着提高。使用IIBH触发,虽然总X射线曝光时间和因此动物剂量保持不变,但总的图像采集时间从15分钟增加到35分钟。此技术是在体内对小鼠进行高质量肺成像的重要步骤,并将为将来的纵向研究提供良好的基础。

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