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针对不同肿瘤形状的热消融体积配置:一项使用机器人方法的重复性研究。

Configuring thermal ablation volumes for treatment of distinct tumor shapes: a repeatability study using a robotic approach.

作者信息

Bulatović Milica, Hermann Jan, Tinguely Pascale, Paolucci Iwan, Weber Stefan

机构信息

ARTORG Center for Biomedical Engineering Research, University of Bern, Bern, Switzerland.

Clinical Service of HPB Surgery and Liver Transplantation, Royal Free Hospital, NHS Foundation Trust, London, United Kingdom.

出版信息

Front Oncol. 2024 Dec 20;14:1463686. doi: 10.3389/fonc.2024.1463686. eCollection 2024.

Abstract

OBJECTIVES

In the current clinical practice of thermal ablation treatment for liver tumors, achieving consistent and effective clinical outcomes across tumors of varying shapes, sizes and locations remains challenging. The aim of this study was to evaluate the repeatability of a novel robotic approach for configurable ablation of distinct tumor shapes and compare it to the standard ablation technique for creating ellipsoidal ablation volumes.

MATERIALS AND METHODS

The repeatability was evaluated in terms of width variability in created ablation volumes. Using a robotic navigation platform, custom ablation profiles configured with power, time, and distance parameters were designed to create four distinct ablation shapes. The profiles were applied for microwave ablation in a tissue-mimicking liver model. For comparison of ablation shape variability, six standard ellipsoidal shapes were created using the standard ablation technique by configuring power and time parameters. For each sample, the resulting ablation area was segmented, and the resulting shape width and length were calculated at the measurement points. Width variability was calculated as the median of the absolute pairwise differences in width at each measurement point, and versus ablation shapes were compared using the Mann-Whitney U test.

RESULTS

All tissue-mimicking samples were successfully ablated using both configurable (n = 48) and standard ablation technique (n = 35). Study findings revealed noninferiority regarding repeatability of created ablation shapes using the robotic platform for configurable ablation, compared to created standard ellipsoidal ablation shapes (p < 0.001, 95% CI ≤ -0.05 mm, Δ = -0.22 mm). Median repeatability of created configurable shapes was 1.00 mm, and for standard shapes 1.22 mm. Maximal repeatability for both groups was below 3 mm.

CONCLUSION

The repeatability of configurable ablation shapes was observed to be noninferior to the standard ablation shapes. Achieving configurable ablation volumes underscores the potential to advance personalization of thermal ablation treatment and broaden its applicability to distinct tumor cases. validation is needed for evaluation of the clinical implications of this novel treatment technique.

摘要

目的

在当前肝脏肿瘤热消融治疗的临床实践中,针对形状、大小和位置各异的肿瘤实现一致且有效的临床效果仍具有挑战性。本研究的目的是评估一种用于对不同肿瘤形状进行可配置消融的新型机器人方法的可重复性,并将其与创建椭圆形消融体积的标准消融技术进行比较。

材料与方法

根据创建的消融体积的宽度变异性评估可重复性。使用机器人导航平台,设计了配置有功率、时间和距离参数的定制消融轮廓,以创建四种不同的消融形状。这些轮廓应用于组织模拟肝脏模型中的微波消融。为了比较消融形状的变异性,通过配置功率和时间参数,使用标准消融技术创建了六个标准椭圆形。对于每个样本,对所得的消融区域进行分割,并在测量点计算所得形状的宽度和长度。宽度变异性计算为每个测量点宽度的绝对成对差异的中位数,并使用曼 - 惠特尼U检验比较可配置与标准消融形状。

结果

使用可配置消融技术(n = 48)和标准消融技术(n = 35)均成功消融了所有组织模拟样本。研究结果显示,与创建的标准椭圆形消融形状相比,使用机器人平台进行可配置消融时,所创建消融形状的可重复性不存在劣势(p < 0.001,95% CI ≤ -0.05 mm,Δ = -0.22 mm)。创建的可配置形状的中位数可重复性为1.00 mm,标准形状为1.22 mm。两组的最大可重复性均低于3 mm。

结论

观察到可配置消融形状的可重复性不低于标准消融形状。实现可配置消融体积凸显了推进热消融治疗个性化并将其适用性扩展到不同肿瘤病例的潜力。需要进行验证以评估这种新型治疗技术的临床意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6c6f/11695216/a401308ea91a/fonc-14-1463686-g001.jpg

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