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大鼠种植型肝癌电化学治疗后影像学特征的改变 被引量:1

Imaging feature changes of rats with implanted liver cancer after electrochemotherapy
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摘要 目的 了解大鼠种植型肝癌电化学治疗前后的影像学特征变化。方法 采用直接注射法制作大鼠肝癌动物模型 ,应用CT、MRI观察大鼠种植型肝癌电化学治疗前后肿瘤大小、密度、边缘、强化、信号等影像学特征变化。结果 大鼠肝癌种植后 7d ,种植肝叶均可见类圆形、单发瘤灶影 ,大小约0 .6~ 0 .8cm ,CT平扫为低密度 ,增强后边缘强化 ;MRI扫描T1WI为低信号 ,T2 WI为高信号。电化学治疗后 7d ,CT平扫均为低密度 ,增强后无明显强化 ;MRI扫描T1WI为高信号为主混杂信号 ,T2 WI为相对低信号。 Objective To study the changes of imaging features of rats with implanted liver cancer before and after electrochemotherapy (EChT).Methods Immediate cancerous ascites injection method was used to form rats liver cancer model. The imaging features of rats with implanted liver cancer, including tumor size, density, border, enhancement and singal were observed with CT and MRI respectively. Results The characteristic magings showed all these rats bearing single, round tumor in liver seven days later. Low density lesions were seen in pre contrast scans and tumor border intensification were seen on contrast scans. Low signal lesions were found in MRI T 1WI and high signal lesions were revealed on MRI T 2WI. Seven days after EchT, low density lesions were seen in pre contrast scan and non enhanced appearences were seen in contrast scan by CT. High signal and mixed signal lesion were seen in MRI T 1WI and relative low signal lesion were seen in MRI T 2WI.Conclusions Imaging features analysis is useful to assess the therapeutic effect on rats with implanted liver cancer before and after EChT.
出处 《介入放射学杂志》 CSCD 2003年第2期132-134,共3页 Journal of Interventional Radiology
基金 国家自然科学基金资助 (3 0 0 70 2 3 3 )
关键词 大鼠 种植型肝癌 电化学治疗 影像学特征 细胞增殖 作用机制 Neoplasm, liver Electrochemotherapy Imaging Animal model
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  • 1张玮,蒋志峰,黎丹戎,唐步坚,李力.电化学治疗后培养液pH的改变对宫颈癌细胞生长抑制的实验研究[J].广西医科大学学报,2009,26(6):905-908. 被引量:2
  • 2Nilsson E,von Euler H,Berendson J,et al.Electrochemical treatment of tumours[J].Bioelectrochemistry,2000,51:1-11.
  • 3Mir LM.Bases and rationale of the electrochemotherapy[J].EJC,2006(supplements 4):38-44.
  • 4Avramov IL,Petrovic SD,Zivkovic PM,et al.An electrochemical illustration of the mathematical modelling of Chlorine impact and acidification in electrochemical tumour treatment and its application on an agar-agar gel system[J].J Electroanal Chem,2003,549:129-135.
  • 5Reber(s)ek M,(C)orovic S,Ser(s)a G,et al.Electrode commutation sequence for honeycomb arrangement of electrodes in electrochemotherapy and corresponding electric field distribution.Bioelectrochemistry,2008,74:25-31.
  • 6Soden DM,Larkin JO,Collins CG,et al.Successful application of targeted electrochemotherapy using novel fiexible electrodes and low dose bleomycin to solid tumours[J].Cancer Letters,2006,232:300-310.
  • 7Sersa G,Miklavcic D,Cemazar M,et al.Electrochemotherapy in treatment of tumours[J].Eur J Surg Oncol,2008,34:232-240.
  • 8Nilsson E,Eduardo F.Mathematical modelling of physicochemical reactions and transport processes occurring around a Platinum cathode during the electrochemical treatment of tumours[J].Bioelectrochemistry,2001,53:213-224.
  • 9von Euler H,Nilsson E,Olsson JM,et al.Electrochemical treatment(EChT)effects in rat mammary and liver tissue.In vivi optimizing of a dose planning model of EChT of tumors[J].Bioelectrochemistry,2001,54:117-124.
  • 10Ren RL,Vora N,Yang F,et al.Variations of dose and electrode spacing for rat breast Cancer electrochemical treatment[J].Bioelectromagnetics,2001,22:205-211.

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