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Feasibility study of the diagnosis and monitoring of cystic fibrosis in pediatric patients using stationary digital chest tomosynthesis

机译:固定式数字化胸部断层扫描诊断和监测小儿囊性纤维化的可行性研究

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Digital chest tomosynthesis (DCT) is a 3D imaging modality which has been shown to approach the diagnostic capability of CT, but uses only one-tenth the radiation dose of CT. One limitation of current commercial DCT is the mechanical motion of the x-ray source which prolongs image acquisition time and introduces motion blurring in images. By using a carbon nanotube (CNT) x-ray source array, we have developed a stationary digital chest tomosynthesis (s-DCT) system which can acquire tomosynthesis images without mechanical motion, thus enhancing the image quality. The low dose and high quality 3D image makes the s-DCT system a viable imaging tool for monitoring cystic fibrosis (CF) patients. The low dose is especially important in pediatric patients who are both more radiosensitive and have a longer lifespan for radiation symptoms to develop. The purpose of this research is to evaluate the feasibility of using s-DCT as a faster, lower dose means for diagnosis and monitoring of CF in pediatric patients. We have created an imaging phantom by injecting a gelatinous mucus substitute into porcine lungs and imaging the lungs from within an anthropomorphic hollow chest phantom in order to mimic the human conditions of a CF patient in the laboratory setting. We have found that our s-DCT images show evidence of mucus plugging in the lungs and provide a clear picture of the airways in the lung, allowing for the possibility of using s-DCT to supplement or replace CT as the imaging modality for CF patients.
机译:数字胸部Tomos合成(DCT)是3D成像模式,已被证明可以接近CT的诊断能力,但仅使用CT的十字辐射剂量。电流商业DCT的一个限制是延长图像采集时间的X射线源的机械运动,并在图像中引入运动模糊。通过使用碳纳米管(CNT)X射线源阵列,我们开发了一种固定数字胸部Tomosynest(S-DCT)系统,其可以在没有机械运动的情况下获取Tomos合成图像,从而提高图像质量。低剂量和高质量的3D图像使S-DCT系统成为用于监测囊性纤维化(CF)患者的可行成像工具。低剂量在儿科患者中尤为重要,既具有辐射敏感,又具有更长的辐射症状以发展。本研究的目的是评估使用S-DCT作为更快,低剂量手段用于诊断和监测儿科患者中CF的可行性。通过将凝胶状粘液注入猪肺和从拟人空心胸部模拟中将肺部成像,以模仿CF患者在实验室环境中的人体状况的成像模型,以模拟肺部肺活量。我们发现我们的S-DCT图像显示粘液中的粘液堵塞的证据,并提供肺部气道的清晰画面,允许使用S-DCT来补充或替换CF患者的成像模型的可能性。

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