V1
谢超宇 声望 1
生物科学
Dynamic CT imaging of volumetric changes in pulmonary nodules correlates with physical measurements of stiffness
作者:, Peter G. Maxim
摘要:Abstract Background and purpose A major challenge in CT screening for lung cancer is limited specificity when distinguishing between malignant and non-malignant pulmonary nodules (PN). Malignant nodules have different mechanical properties and tissue characteristics (‘stiffness’) from non-malignant nodules. This study seeks to improve CT specificity by demonstrating in rats that measurements of volumetric ratios in PNs with varying composition can be determined by respiratory-gated dynamic CT imaging and that these ratios correlate with direct physical measurements of PN stiffness. Methods and materials Respiratory-gated MicroCT images acquired at extreme tidal volumes of 9 rats with PNs from talc, matrigel and A549 human lung carcinoma were analyzed and their volumetric ratios (δ) derived. PN stiffness was determined by measuring the Young’s modulus using atomic force microscopy (AFM) for each nodule excised immediately after MicroCT imaging. Results There was significant correlation (p = 0.0002) between PN volumetric ratios determined by respiratory-gated CT imaging and the physical stiffness of the PNs determined from AFM measurements. Conclusion We demonstrated proof of concept that PN volume changes measured non-invasively correlate with direct physical measurements of stiffness. These results may translate clinically into a means of improving the specificity of CT screening for lung cancer and/or improving individual prognostic assessments based on lung tumor stiffness.
关键词:
论文方向:
发表期刊:Radiotherapy and Oncology Volume 122, Issue 2
发表时间:Tue Feb 28 00:00:00 CST 2017
数字识别码:10.1016/j.radonc.2016.11.019
是否作者本人:

版权及免责声明:

本网站所有论文文件均系用户自行上传或提供,本网站对其内容准确性及合法性概不负责,亦不承担任何法律责任。论文版权归原作者及原出处所有。

如您发现网站其他用户上传的论文有侵犯您的姓名权、隐私权、著作权或其他合法权益现象的,请及时与本网站联系并附加相关权利证明文件,以便本网站及时作出处理,维护您的合法权益。

本网站拥有对此声明的最终解释权。

全部评论 ( 0 )

发评论
5.0/10分

0人评分