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小肠异质性对不可逆电穿孔治疗规划的影响。

The effect of small intestine heterogeneity on irreversible electroporation treatment planning.

作者信息

Phillips Mary

出版信息

J Biomech Eng. 2014 Sep;136(9):091009. doi: 10.1115/1.4027815.

DOI:10.1115/1.4027815
PMID:24907451
Abstract

Nonthermal irreversible electroporation (NTIRE) is an ablation modality that utilizes microsecond electric fields to produce nanoscale defects in the cell membrane. This results in selective cell death while preserving all other molecules, including the extracellular matrix. Here, finite element analysis and experimental results are utilized to examine the effect of NTIRE on the small intestine due to concern over collateral damage to this organ during NTIRE treatment of abdominal cancers. During previous studies, the electrical treatment parameters were chosen based on a simplified homogeneous tissue model. The small intestine, however, has very distinct layers, and a more realistic model is needed to further develop this technology for precise clinical applications. This study uses a two-dimensional finite element solution of the Laplace and heat conduction equations to investigate how small intestine heterogeneities affect the electric field and temperature distribution. Experimental results obtained by applying NTIRE to the rat small intestine in vivo support the heterogeneous effect of NTIRE on the tissue. The numerical modeling indicates that the electroporation parameters chosen for this study avoid thermal damage to the tissue. This is supported by histology obtained from the in vivo study, which showed preservation of extracellular structures. The finite element model also indicates that the heterogeneous structure of the small intestine has a significant effect on the electric field and volume of cell ablation during electroporation and could have a large impact on the extent of treatment. The heterogeneous nature of the tissue should be accounted for in clinical treatment planning.

摘要

非热不可逆电穿孔(NTIRE)是一种消融方式,它利用微秒级电场在细胞膜上产生纳米级缺陷。这会导致选择性细胞死亡,同时保留所有其他分子,包括细胞外基质。在此,由于担心在腹部癌症的NTIRE治疗过程中该器官受到附带损伤,利用有限元分析和实验结果来研究NTIRE对小肠的影响。在先前的研究中,电治疗参数是基于简化的均匀组织模型选择的。然而,小肠具有非常明显的层次,需要一个更真实的模型来进一步开发这项技术以用于精确的临床应用。本研究使用拉普拉斯方程和热传导方程的二维有限元解来研究小肠的不均匀性如何影响电场和温度分布。通过对大鼠小肠进行体内NTIRE实验获得的结果支持了NTIRE对组织的不均匀影响。数值模拟表明,本研究选择的电穿孔参数避免了对组织的热损伤。这得到了体内研究组织学结果的支持,该结果显示细胞外结构得以保留。有限元模型还表明,小肠的不均匀结构对电穿孔过程中的电场和细胞消融体积有显著影响,并且可能对治疗范围产生重大影响。在临床治疗规划中应考虑组织的不均匀性质。

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