期刊信息
 

刊名:血管与腔内血管外科杂志
主办:中国医学科学院
主管:家卫生健康委员会
ISSN:2096-0646
CN:10-1346/R
语言:中文
周期:双月刊
影响因子:0
被引频次:877
期刊分类:临床医学
期刊热词:
血栓闭塞性脉管炎,腔内治疗,血管,下肢深静脉血栓形成,腔内血管,外科杂志,下肢深静脉血栓,深静脉血栓形成,主动脉夹层,并发症,

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血管影响肿瘤治疗效果的仿真研究(4)

来源:血管与腔内血管外科杂志 【在线投稿】 栏目:期刊导读 时间:2021-07-22 07:37

【作者】网站采编

【关键词】

【摘要】[9] ZHANG Aili, XU Lixing, SANDISON G A. A microscale model for prediction of breast cancer cell damage during cryosurgery[J]. Cryobiology, 2003, 47(2): 143-154. [10] 诸凯. 血液对流换热的数值

[9] ZHANG Aili, XU Lixing, SANDISON G A. A microscale model for prediction of breast cancer cell damage during cryosurgery[J]. Cryobiology, 2003, 47(2): 143-154.

[10] 诸凯. 血液对流换热的数值计算[J]. 计算物理, 2009, 26(6): 903-910. (ZHU Kai. Numerical calculation of blood convection heat transfer[J]. Computational Physics, 2009, 26(6): 903-910.)

[11] YU Qianfeng, YI Jingru, ZHAO Gang. Effect of vascular network and nanoparticles on heat transfer and intracellular ice formation in tumor tissues during cryosurgery[J]. Cryoletters, 2014, 35(2): 95-100.

[12] GONZALEZ F J. Thermal simulation of breast tumors[J]. Revista Mexicana Defisica, 2007, 53(4): 323-326.

[13] GONZALEZ F J. Non-invasive estimation of the metabolic heat production of breast tumors using digital infrared imaging[J]. Quantitative Infrared Thermography Journal, 2011, 8(2): 139-148.

[14] YAN Jingfu. Nanocryosurgery and its mechanisms for enhancing freezing efficiency of tumor tissues, Nanomed. Nanotechnol[J]. Biology Medicine, 2008, 4(1): 79-87.

[15] OKAJIMA J, KOMIYA A, MARUYAMA S. 24-gauge ultrafine cryoprobe with diameter of 550 lm and its cooling performance[J]. Cryobiology, 2014, 69(3): 411-418.

[16] ZHAO Gang, GAO Dayong. Heating effect of thermally significant blood vessels in perfused tumor tissue during cryosurgery[J]. Journal of Mechanics in Medicine and Biology, 2012, 12(1): 372-379.

[17] ZHANG Xin, HOSSAIN S M C, ZHAO Gang, et al. Two-phase heat transfer model for multiprobe cryosurgery[J]. Applied Thermal Engineering, 2017, 113: 47-57.

[18] WANG Zhen, ZHAO Gang, YU Qianfeng, et al. Three-dimensional numerical simulation of the effects of fractal vascular trees on tissue temperature and intracelluar ice formation during combined cancer therapy of cryosurgery and hyperthermia[J]. Applied Thermal Engineering, 2015, 90: 296-304.

[19] GAGE A A, BAUST J. Mechanisms of tissue injury in cryosurgery[J]. Cryobiology,1998, 37(3): 171-186.

[20] GAGE A A. Freezing tissue to maximize injury in cryosurgery[J]. Cryobiology,1982, 19(6): 656.

[21] HOFFMANN N E, BISCHOF J C. The cryobiology of cryosurgical injury[J]. Urology, 2002, 60(2): 40-49.

[22] VAN-NIMWEGEN S A, L′EPLATTENIERH F, REM A I, et al. Nd: YAG surgical laser effectsin canine prostate tissue: temperature and damage distribution[J]. Physics in Medicine & Biology,2009, 54(1): 29-44.

[23] 张洁. 液氮低温探针实验台的研制及冻融过程的实验与分析[D]. 上海:上海理工大学, 2000. (ZHANG JIE. Development ofcryogenic liquid nitrogen probe test table and experiment and analysis offreeze-thaw process[D]. Shanghai: University of Shanghai for Science and Technology, 2000.)

[24] CHANG Zhaohua, FINKELSTEIN J J, BAUST JOHN. Development of a high-performance multiprobe cryosurgical device[J]. Biomedical Instrumentation and Technology, 1994, 28(5): 383-390.

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