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猪组织模型中J-Plasma®、单极、氩气和激光电外科手术的比较热效应

Comparative Thermal Effects of J-Plasma®, Monopolar, Argon, and Laser Electrosurgery in a Porcine Tissue Model.

作者信息

Masghati Salome, Pedroso Jasmine, Gutierrez Melissa, Stockwell Erica, Volker K Warren, Howard David L

机构信息

Las Vegas Minimally Invasive Surgery, University of Nevada, Las Vegas, School of Medicine, Las Vegas, Nevada.

Las Vegas Minimally Invasive Surgery, Women's Pelvic Health Center WellHealth QualityCare, a DaVita Medical Group, Las Vegas, Nevada.

出版信息

Surg Technol Int. 2019 May 15;34:35-39.

Abstract

INTRODUCTION

The objective of this study was to understand how J-Plasma® (Bovie Medical Corporation, Clearwater, Florida) surgical energy compares to monopolar, argon beam, and CO2 laser devices in terms of depth of penetration and lateral thermal spread in a porcine tissue model.

MATERIALS AND METHODS

Using a porcine animal model, we applied the thermal energy of the J-Plasma® laser, Bovie Monopolar Pencil™ (Bovie Medical Corporation, Clearwater, Florida), argon beam coagulator, and CO2 laser to porcine small bowel, bladder, and peritoneal tissues at equivalent settings. Tissue was excised and sent to pathology for histologic evaluation. Primary outcome was depth of penetration and lateral thermal spread.

RESULTS

When applied to peritoneum tissue, CO2 laser had the greatest lateral thermal spread at 2.99mm, while the argon beam had the lowest at just under 1.5mm. With regard to depth of penetration, the monopolar pencil had the highest while J-Plasma® had the lowest. When applied to bladder tissue, the argon beam was associated with the greatest lateral thermal spread (3.1mm) as compared to the other three devices (all less than 1mm). In terms of depth of penetration of bladder tissue, J-Plasma® again had the lowest value, while the monopolar pencil had the highest. When applied to small intestine tissue, the argon beam had the greatest lateral spread (3.51mm), while J-Plasma® had the lowest (less than 1mm). Regarding depth of penetration of small intestine tissue, argon beam had the highest value at 1.8mm compared to the other three devices (all below 0.6mm).

CONCLUSION

Consistent with our previous study, J-Plasma® had minimal lateral and depth spread when applied to various tissue types. J-Plasma® performed better or similar when compared to monopolar, argon beam, and laser electrosurgical devices. Further studies in-vivo are needed to evaluate safety and surgical application of the J-Plasma® device.

摘要

引言

本研究的目的是在猪组织模型中,就穿透深度和侧向热扩散方面,了解J-Plasma®(佛罗里达州克利尔沃特市的博维医疗公司)手术能量与单极、氩束和二氧化碳激光设备相比如何。

材料与方法

使用猪动物模型,我们在等效设置下,将J-Plasma®激光、博维单极笔(佛罗里达州克利尔沃特市的博维医疗公司)、氩束凝固器和二氧化碳激光的热能应用于猪的小肠、膀胱和腹膜组织。切除组织并送去病理科进行组织学评估。主要结果是穿透深度和侧向热扩散。

结果

应用于腹膜组织时,二氧化碳激光的侧向热扩散最大,为2.99毫米,而氩束最低,略低于1.5毫米。关于穿透深度,单极笔最高,而J-Plasma®最低。应用于膀胱组织时,与其他三种设备(均小于1毫米)相比,氩束的侧向热扩散最大(3.1毫米)。就膀胱组织的穿透深度而言,J-Plasma®再次具有最低值,而单极笔最高。应用于小肠组织时,氩束的侧向扩散最大(3.51毫米),而J-Plasma®最低(小于1毫米)。关于小肠组织的穿透深度,与其他三种设备(均低于0.6毫米)相比,氩束的值最高,为1.8毫米。

结论

与我们之前的研究一致,J-Plasma®应用于各种组织类型时,侧向和深度扩散最小。与单极、氩束和激光电外科设备相比,J-Plasma®表现更好或相似。需要进一步的体内研究来评估J-Plasma®设备的安全性和手术应用。

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