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使用实验性气腹和热传感器测量双极电凝期间的热扩散。

Measuring thermal spread during bipolar cauterizing using an experimental pneumoperitoneum and thermal sensors.

作者信息

Siracusano Salvatore, Marchioro Giacomo, Scutelnic Dumitru, Brunelli Matteo, Talamini Renato, Porcaro Antonio Benito, Fiorini Paolo, Muradore Riccardo, Daffara Claudia

机构信息

Department of Life, Health and Environmental Sciences, University of L'Aquila, L'Aquila, Italy.

Department of Computer Science, University of Verona, Verona, Italy.

出版信息

Front Surg. 2023 Jun 13;10:1115570. doi: 10.3389/fsurg.2023.1115570. eCollection 2023.

Abstract

OBJECTIVE

During nerve-sparing robot-assisted radical prostatectomy (RARP) bipolar electrocoagulation is often used but its use is controversial for the possible thermal damage of neurovascular bundles. Aim of the study was to evaluate the spatial-temporal thermal distribution in the tissue and the correlation with the electrosurgery-induced tissue damage in a controlled, CO2-rich environment modelling the laparoscopy conditions..

METHODS

We manufactured a sealed plexiglass chamber (SPC) equipped with sensors to reproduce experimentally the environmental conditions of pneumoperitoneum during RARP. We evaluated in 64 pig musculofascial tissues (PMTs) of approximately 3 cm × 3 cm × 2 cm the spatial-temporal thermal distribution in the tissue and the correlation with the electrosurgery-induced tissue damage in a controlled CO2-rich environment modeling the laparoscopy conditions. Critical heat spread of bipolar cauterizing during surgical procedure was assessed by the employment of a compact thermal camera (C2) with a small core sensor (60 × 80 microbolometer array in the range 7-14 μm).

RESULTS

Bipolar instruments used at 30 W showed a thermal spread area of 18 mm when applied for 2 s and 28 mm when applied for 4 s. At 60 W, bipolar instruments showed a mean thermal spread and 19 mm when applied for 2 s; and 21 mm when applied for 4 s. Finally, histopathological analysis showed that thermal damage is distributed predominantly on the surface rather than in depth.

CONCLUSIONS

The application of these results is very interesting for the definition of an accurate use of bipolar cautery during nerve-sparing RARP. It demonstrates the feasibility of using miniaturized thermal sensors, thus addressing the potential for next developments regarding the design of thermal endoscopic devices for robotic use.

摘要

目的

在保留神经的机器人辅助根治性前列腺切除术(RARP)中,常使用双极电凝,但由于其可能对神经血管束造成热损伤,其应用存在争议。本研究的目的是在模拟腹腔镜手术条件的富含二氧化碳的可控环境中,评估组织中的时空热分布以及与电外科手术引起的组织损伤的相关性。

方法

我们制造了一个密封的有机玻璃腔室(SPC),配备传感器以实验性地再现RARP期间气腹的环境条件。我们在64块大小约为3 cm×3 cm×2 cm的猪肌筋膜组织(PMT)中,评估了在模拟腹腔镜手术条件的富含二氧化碳的可控环境中,组织中的时空热分布以及与电外科手术引起的组织损伤的相关性。通过使用具有小核心传感器(7至14μm范围内的60×80微测辐射热计阵列)的紧凑型热像仪(C2),评估手术过程中双极烧灼的临界热扩散。

结果

30 W功率下使用的双极器械,施加2 s时热扩散面积为18 mm,施加4 s时为28 mm。在60 W时,双极器械施加2 s时平均热扩散为19 mm;施加4 s时为21 mm。最后,组织病理学分析表明,热损伤主要分布在表面而非深层。

结论

这些结果的应用对于在保留神经的RARP中准确定义双极电灼的使用非常有意义。它证明了使用小型化热传感器的可行性,从而为机器人使用的热内镜设备的未来设计发展潜力指明了方向。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/de56/10293755/fcb1f9fdc53c/fsurg-10-1115570-g001.jpg

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