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利用组织介电特性塑造微波热消融区域。

Exploiting Tissue Dielectric Properties to Shape Microwave Thermal Ablation Zones.

机构信息

Electrical and Electronic Engineering, National University of Ireland Galway, H91 TK33 Galway, Ireland.

Translational Medical Device Lab, National University of Ireland Galway, H91 TK33 Galway, Ireland.

出版信息

Sensors (Basel). 2020 Jul 16;20(14):3960. doi: 10.3390/s20143960.

Abstract

The dielectric characterization of tissue targets of microwave thermal ablation (MTA) have improved the efficacy and pre-procedural planning of treatment. In some clinical scenarios, the tissue target lies at the interface with an external layer of fat. The aim of this work is to investigate the influence of the dielectric contrast between fat and target tissue on the shape and size of the ablation zone. A 2.45 GHz monopole antenna is placed parallel to an interface modelled by fat and a tissue characterized by higher dielectric properties and powered at 30 and 60 W for 60 s. The performances of MTA are numerically investigated considering different interface scenarios (i.e., different widths of fat layer, shifts in the antenna alignment) and a homogeneous reference scenario. Experiments (N = 10) are conducted on ex vivo porcine tissue to validate the numerical results. Asymmetric heating patterns are obtained in the interface scenario, the ablation zone in the target tissue is two-fold to ten-fold the size of the zone in the adipose tissue, and up to four times larger than the homogenous scenario. The adipose tissue reflects the electromagnetic energy into the adjacent tissue target, reducing the heating in the opposite direction.

摘要

微波热消融(MTA)组织靶介电特性的研究改善了治疗的疗效和术前规划。在某些临床情况下,组织靶位于与外部脂肪层交界的位置。本研究旨在探讨脂肪和目标组织之间的介电对比度对消融区域形状和大小的影响。采用 2.45GHz 的单极天线,平行放置于由脂肪模拟的界面上,同时对具有更高介电特性的组织进行照射,功率分别为 30W 和 60W,照射时间为 60s。通过数值研究考虑不同界面情况(即不同宽度的脂肪层、天线对准的偏移)和均匀参考情况,来评估 MTA 的性能。实验(N=10)在离体猪组织上进行,以验证数值结果。在界面情况下,会得到不对称的加热模式,在目标组织中的消融区域是脂肪组织中的两倍到十倍,比均匀情况大四倍。脂肪组织将电磁能反射到相邻的组织靶,从而减少相反方向的加热。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0a2e/7411896/e2b567a640f0/sensors-20-03960-g001.jpg

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