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一种新型三维射频消融模拟器系统的实用性

Usefulness of a New Three-Dimensional Simulator System for Radiofrequency Ablation.

作者信息

Hirooka Masashi, Koizumi Yohei, Imai Yusuke, Miyake Teruki, Watanabe Takao, Yoshida Osamu, Takeshita Eiji, Tokumoto Yoshio, Abe Masanori, Hiasa Yoichi

机构信息

Department of Gastroenterology and Metabology, Ehime University Graduate School of Medicine, Shitsukawa, Toon, Ehime, Japan.

出版信息

PLoS One. 2016 Feb 4;11(2):e0148298. doi: 10.1371/journal.pone.0148298. eCollection 2016.

Abstract

Multipuncture radiofrequency ablation is expected to produce a large ablated area and reduce intrahepatic recurrence of hepatocellular carcinoma; however, it requires considerable skill. This study evaluated the utility of a new simulator system for multipuncture radiofrequency ablation. To understand positioning of multipuncture electrodes on three-dimensional images, we developed a new technology by expanding real-time virtual ultrasonography. We performed 21 experimental punctures in phantoms. Electrode insertion directions and positions were confirmed on computed tomography, and accuracy and utility of the simulator system were evaluated by measuring angles and intersections for each electrode. Moreover, to appropriately assess placement of the three electrodes, puncture procedures with or without the simulator were performed by experts and non-experts. Technical success was defined as maximum angle and distance ratio, as calculated by maximum and minimum distances between electrodes. In punctures using 2 electrodes, correlations between angles on each imaging modality were strong (ultrasound vs. simulator: r = 0.991, p<0.001, simulator vs. computed tomography: r = 0.991, p<0.001, ultrasound vs. computed tomography: r = 0.999, p<0.001). Correlations between distances in each imaging modality were also strong (ultrasound vs. simulator: r = 0.993, p<0.001; simulator vs. computed tomography: r = 0.994, p<0.001; ultrasound vs. computed tomography: r = 0.994, p<0.001). In cases with 3 electrodes, distances between each electrode correlated strongly (yellow-labeled vs. red-labeled: r = 0.980, p<0.001; red-labeled vs. blue-labeled: r = 0.953, p<0.001; yellow-labeled vs. blue-labeled: r = 0.953, p<0.001). Both angle and distance ratio (expert with simulator vs. without simulator; p = 0.03, p = 0.02) were significantly smaller in procedures performed by experts using the simulator system. The new simulator system appears to accurately guide electrode positioning. This simulator system could allow multipuncture radiofrequency ablation to be performed more effectively and comfortably.

摘要

多点射频消融有望产生较大的消融区域并减少肝细胞癌的肝内复发;然而,这需要相当高的技术水平。本研究评估了一种用于多点射频消融的新型模拟系统的实用性。为了了解三维图像上多点电极的定位,我们通过扩展实时虚拟超声技术开发了一种新技术。我们在模型上进行了21次实验性穿刺。在计算机断层扫描上确认电极插入方向和位置,并通过测量每个电极的角度和交叉点来评估模拟系统的准确性和实用性。此外,为了适当评估三个电极的放置情况,由专家和非专家分别进行有无模拟器辅助的穿刺操作。技术成功定义为电极之间最大和最小距离计算得出的最大角度和距离比。在使用两个电极的穿刺中,各成像模态上角度之间的相关性很强(超声与模拟器:r = 0.991,p<0.001;模拟器与计算机断层扫描:r = 0.991,p<0.001;超声与计算机断层扫描:r = 0.999,p<0.001)。各成像模态上距离之间的相关性也很强(超声与模拟器:r = 0.993,p<0.

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4d7a/4742253/538717cf3b32/pone.0148298.g001.jpg

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