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在热射频消融过程中电极和星状神经节相对位置的影响:一项模拟研究。

Effect of the relative position of electrode and stellate ganglion during thermal radiofrequency ablation: a simulation study.

机构信息

Instituto de Física de Líquidos y Sistemas Biológicos (CONICET), La Plata, Argentina.

Instituto de Ingeniería y Agronomía, Universidad Nacional Arturo Jauretche, Florencio Varela, Argentina.

出版信息

Int J Hyperthermia. 2021;38(1):1502-1511. doi: 10.1080/02656736.2021.1974580.

Abstract

PURPOSE

Stellate ganglion (SG) block by thermal radiofrequency ablation (RFA) is frequently conducted as a therapeutic intervention for sympathetic-maintained and neuropathic pain syndromes. RFA's partial lack of effectiveness could be partly due to the ablation zone (AZ) not completely covering the SG section and therefore preventing the 'cutting' of the afferent pathways. Our objective was to build a theoretical model to conduct computer simulations to assess the effect of the electrode position relative to the SG.

METHODS

A three-dimensional model was built including the SG and adjacent tissues (vertebrae C7-T1-T2, trachea, carotid artery and vertebral artery). RFA (90-s, 80 °C) was simulated considering a 22 G-5 mm electrode. The AZ was computed using the 50 °C isotherm.

RESULTS

An electrode displacement of 2 mm in any direction from the optimal position (centered on the SG) meant that the AZ did not fully cover the SG section. Likewise, SG size considerably affected the RFA effectiveness since the AZ fully covered the section of small but not large SGs.

CONCLUSIONS

The findings suggest that the currently used SG RFA settings (i.e., 22 G-5 mm electrode, 90-s, 80 °C) may not be appropriate due to their inability to achieve an AZ that fully covers the SG cross section under certain circumstances, such as a large SG and non-optimal positioning of the RF electrode with respect to the SG center.

摘要

目的

星状神经节(SG)阻断热射频消融(RFA)常用于治疗交感神经维持和神经性疼痛综合征。RFA 的部分疗效不佳可能部分归因于消融区(AZ)不能完全覆盖 SG 节段,因此不能“切断”传入通路。我们的目的是建立一个理论模型进行计算机模拟,以评估电极相对于 SG 的位置的影响。

方法

建立了一个包括 SG 及其相邻组织(C7-T1-T2 椎体、气管、颈动脉和椎动脉)的三维模型。模拟了考虑使用 22G-5mm 电极的 90s、80°C 的 RFA。使用 50°C 等温线计算 AZ。

结果

电极在任何方向上偏离最佳位置(位于 SG 中心)2mm,意味着 AZ 不能完全覆盖 SG 节段。同样,SG 大小对 RFA 效果有很大影响,因为 AZ 完全覆盖了小 SG 段,但不能覆盖大 SG 段。

结论

研究结果表明,目前使用的 SG RFA 设置(即 22G-5mm 电极、90s、80°C)可能不合适,因为在某些情况下,例如 SG 较大和 RF 电极相对于 SG 中心的位置不理想,无法实现完全覆盖 SG 横截面的 AZ。

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