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使用蒙特卡罗技术模拟的冷冻手术期间细胞间冰传播的参数分析。

Parametric analysis of intercellular ice propagation during cryosurgery, simulated using monte carlo techniques.

作者信息

Stott Shannon L, Irimia Daniel, Karlsson Jens O M

机构信息

Woodruff School of Mechanical Engineering, Georgia Institute of Technology, Atlanta, GA 30332-0405, USA.

出版信息

Technol Cancer Res Treat. 2004 Apr;3(2):113-23. doi: 10.1177/153303460400300204.

Abstract

A microscale theoretical model of intracellular ice formation (IIF) in a heterogeneous tissue volume comprising a tumor mass and surrounding normal tissue is presented. Intracellular ice was assumed to form either by intercellular ice propagation or by processes that are not affected by the presence of ice in neighboring cells (e.g., nucleation or mechanical rupture). The effects of cryosurgery on a 2D tissue consisting of 10(4) cells were simulated using a lattice Monte Carlo technique. A parametric analysis was performed to assess the specificity of IIF-related cell damage and to identify criteria for minimization of collateral damage to the healthy tissue peripheral to the tumor. Among the parameters investigated were the rates of interaction-independent IIF and intercellular ice propagation in the tumor and in the normal tissue, as well as the characteristic length scale of thermal gradients in the vicinity of the cryosurgical probe. Model predictions suggest gap junctional intercellular communication as a potential new target for adjuvant therapies complementing the cryosurgical procedure.

摘要

提出了一种在包含肿瘤块和周围正常组织的异质组织体积中细胞内冰形成(IIF)的微观理论模型。细胞内冰被假定通过细胞间冰传播或不受相邻细胞中冰的存在影响的过程(例如成核或机械破裂)形成。使用晶格蒙特卡罗技术模拟了冷冻手术对由10⁴个细胞组成的二维组织的影响。进行了参数分析,以评估与IIF相关的细胞损伤的特异性,并确定使肿瘤周围健康组织的附带损伤最小化的标准。研究的参数包括肿瘤和正常组织中与相互作用无关的IIF和细胞间冰传播的速率,以及冷冻手术探针附近热梯度的特征长度尺度。模型预测表明,间隙连接细胞间通讯是补充冷冻手术程序的辅助治疗的潜在新靶点。

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