胸片
肺
强度(物理)
核医学
射线照相术
肺容积
体积热力学
高分辨率
X射线
部分容积
放射科
医学
材料科学
生物医学工程
物理
地质学
光学
遥感
内科学
量子力学
作者
Dylan William O'Connell,Kaye S. Morgan,Gary Ruben,Linda C P Croton,James A Pollock,Michelle K Croughan,Erin V McGillick,Megan J Wallace,Kelly J Crossley,Emily J Pryor,Robert A Lewis,Stuart B Hooper,Marcus J Kitchen
标识
DOI:10.1088/1361-6560/ac934d
摘要
Abstract Objective . To develop a robust technique for calculating regional volume changes within the lung from x-ray radiograph sequences captured during ventilation, without the use of computed tomography (CT). Approach . This technique is based on the change in transmitted x-ray intensity that occurs for each lung region as air displaces the attenuating lung tissue. Main results . Lung air volumes calculated from x-ray intensity changes showed a strong correlation ( R 2 = 0.98) against the true volumes, measured from high-resolution CT. This correlation enables us to accurately convert projected intensity data into relative changes in lung air volume. We have applied this technique to measure changes in regional lung volumes from x-ray image sequences of mechanically ventilated, recently-deceased newborn rabbits, without the use of CT. Significance . This method is suitable for biomedical research studies,enabling quantitative regional measurement of relative lung air volumes at high temporal resolution, and shows great potential for future clinical application.
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