灌注参数作为早期预测大鼠肿瘤模型放疗反应的潜在成像生物标志物。

IF 2.1 4区 医学 Q2 Medicine
Ho Yun Lee, Namkug Kim, J. Goo, E. Chie, H. Song
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引用次数: 9

摘要

目的比较大鼠肿瘤模型放疗前后各种肿瘤相关放射学形态学变化和CT灌注参数,以确定预测放疗早期疗效的最佳影像学评估技术。方法8只Fischer大鼠颈部双侧植入FN13762小鼠乳腺癌细胞配对肿瘤,右侧肿瘤给予单次20 Gy剂量放疗。放疗前第0天、放疗后第1、5天进行灌注CT检查。测量基于大小的变量,包括最长直径、肿瘤面积和体积。对整个肿瘤体积进行定量灌注分析,获得肿瘤通透性和血容量(BVs)。定量分析灌注参数直方图的曲线下面积(AUC)差异及均匀性和熵的织构分析。病理标本于第5天灌注成像后立即测定凋亡细胞密度。结果放疗后第1天,放疗前后肿瘤大小差异无统计学意义。在放疗前和放疗后第1天肿瘤间通透性均匀性变化百分比方面,放疗肿瘤的变化明显高于未放疗肿瘤(分别为0.085[-0.417,0.331]和-0.131 [-0.536,0.261]);P = 0.042)。治疗组肿瘤各体素血管通透性直方图auc与对照组相比,第0天与第1天差异显著(通透性分别为21.4[-2.2,37.5]和9.5 [-8.9,33.8],P = 0.030;BV分别为52.9[-6186.0,419.2]和11.9 [-198.3,346.7],P = 0.049)。凋亡细胞密度与BV的AUC差、通透性均匀度变化百分比和BV呈显著正相关(r=0.202, r=0.644, r=0.706)。结论CT灌注参数的直方图分析能够比形态计量学评估更早地预测肿瘤反应,似乎有可能为辐照大鼠模型提供预后预测信息。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Perfusion parameters as potential imaging biomarkers for the early prediction of radiotherapy response in a rat tumor model.
PURPOSE We aimed to compare various tumor-related radiologic morphometric changes and computed tomography (CT) perfusion parameters before and after treatment, and to determine the optimal imaging assessment technique for the prediction of early response in a rat tumor model treated with radiotherapy. METHODS Among paired tumors of FN13762 murine breast cancer cells implanted bilaterally in the necks of eight Fischer rats, tumors on the right side were treated with a single 20 Gy dose of radiotherapy. Perfusion CT studies were performed on day 0 before radiotherapy, and on days 1 and 5 after radiotherapy. Variables based on the size, including the longest diameter, tumor area, and volume, were measured. Quantitative perfusion analysis was performed for the whole tumor volume and permeabilities and blood volumes (BVs) were obtained. The area under the curve (AUC) difference in the histograms of perfusion parameters and texture analyses of uniformity and entropy were quantified. Apoptotic cell density was measured on pathology specimens immediately after perfusion imaging on day 5. RESULTS On day 1 after radiotherapy, differences in size between the irradiated and nonirradiated tumors were not significant. In terms of percent changes in the uniformity of permeabilities between tumors before irradiation and on day 1 after radiotherapy, the changes were significantly higher in the irradiated tumors than in the nonirradiated tumors (0.085 [-0.417, 0.331] vs. -0.131 [-0.536, 0.261], respectively; P = 0.042). The differences in AUCs of the histogram of voxel-by-voxel vascular permeability and BV in tumors between day 0 and day 1 were significantly higher in treated tumors compared with the control group (permeability, 21.4 [-2.2, 37.5] vs. 9.5 [-8.9, 33.8], respectively, P = 0.030; BV, 52.9 [-6186.0, 419.2] vs. 11.9 [-198.3, 346.7], respectively, P = 0.049). Apoptotic cell density showed a significantly positive correlation with the AUC difference of BV, the percent change of uniformity in permeability and BV (r=0.202, r=0.644, and r=0.706, respectively). CONCLUSION By enabling earlier tumor response prediction than morphometric evaluation, the histogram analysis of CT perfusion parameters appears to have a potential in providing prognostic predictive information in an irradiated rat model.
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来源期刊
CiteScore
3.50
自引率
4.80%
发文量
69
审稿时长
6-12 weeks
期刊介绍: Diagnostic and Interventional Radiology (Diagn Interv Radiol) is the open access, online-only official publication of Turkish Society of Radiology. It is published bimonthly and the journal’s publication language is English. The journal is a medium for original articles, reviews, pictorial essays, technical notes related to all fields of diagnostic and interventional radiology.
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