作者
Xiaoqian Chen,Bang-guo Tan,Min Xu,Haiying Zhou,Ou Jing,Xiaoming Zhang,Ziyi Yu,Tian‐wu Chen
摘要
Abstract
Purpose
To evaluate feasibility of apparent diffusion coefficient (ADC) at different b-values to differentiate between tumor, tumor-adjacent and tumor-distant tissues in rectal adenocarcinoma (RA). Materials and Methods
Seventy consecutive patients with RA undergoing preoperative diffusion-weighted imaging were retrospectively enrolled. ADCs of tumor, proximal tumor-adjacent tissue (PTA) and tumor-distant tissue (PTD), and distal tumor-adjacent tissue (DTA) and tumor-distant tissue (DTD) were calculated with b-values of 0 and 800 sec/mm2, 0 and 1000 sec/mm2, 0 and 1500 sec/mm2, and multiple b-values of 0, 50, 100, 800, 1000 and 1500 sec/mm2. Statistical analysis was performed to determine feasibility of ADC to differentiate between pairwise tissues. Results
Mean ADC of tumor was lower than those of PTA, PTD, DTA and DTD; and mean ADCs of PTA and DTA were lower than those of PTD and DTD at all b-values, respectively (all P-values < 0.001). ADC cut-offs of 1.089×10−3 mm2/sec (b = 0, 1000 sec/mm2) or 1.215×10−3 mm2/sec (b = 0, 800 sec/mm2), and 1.142×10−3 mm2/sec (b = 0, 1000 sec/mm2) or 0.995×10−3 mm2/sec (b = 0, 1500 sec/mm2) achieved excellent performance in differentiating tumor from PTA or PTD, and tumor from DTA or DTD (area under receiver operating characteristic curves [AUCs]: 0.813 or 0.952, and 0.970 or 0.996), respectively. ADC cut-offs of 1.625×10−3 mm2/sec (b = 0, 800 sec/mm2), and 1.165×10−3 mm2/sec (b = 0, 1500 sec/mm2) could differentiate PTA from PTD, and DTA from DTD (AUCs: 0.709 and 0.673), respectively. Conclusion
ADC can help differentiate between tumor, tumor-adjacent and tumor-distant tissues in RA.