Rationale, bench testing and in vivo evaluation of a novel 5 mm laparoscopic vessel sealing device with homogeneous pressure distribution in long instrument jaws.

Stefan Eick, Brandon Loudermilk, Erik Walberg, Moritz N Wente
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引用次数: 15

Abstract

Background: In 1998, an electrothermal bipolar vessel sealing (EBVS) system was introduced and quickly became an integral component of the surgical armamentarium in various surgical specialties. Currently available EBVS instruments use a scissor-like jaw configuration and closing mechanism, which causes decreasing compression pressure from the proximal to the distal end of the jaws. A new EBVS system is described here which utilizes a different instrument jaw configuration and closing mechanism to enable a more homogeneous pressure distribution despite longer instrument jaws.

Methods: Results of jaw pressure distribution measurements as well as sealing experiments with subsequent burst pressure measurements ex vivo on bovine uterine arteries are demonstrated. Furthermore, an in vivo evaluation of the new EBVS system in a canine and porcine model including histological examination is presented.

Results: The device revealed an even pressure distribution throughout the whole jaw length. The ex vivo burst pressure measurements revealed high average burst pressures, above 300 mmHg, independent of the outer diameter (1 to 7 mm) of the tested vessels. Histological evaluation of sealed vessels 21 days postoperatively demonstrated sealed and fused vessels without adjacent tissue damage.

Conclusions: The even pressure distribution leading to a sufficient tissue sealing in combination with the novel closing mechanism and extended jaw length differentiates the novel device from other available EBVS systems. This might offer a reduction of the overall procedure time, which should be further evaluated in a clinical study.

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一种新型的5毫米腹腔镜血管密封装置的原理、台架测试和体内评估,该装置在长仪器颚中具有均匀的压力分布。
背景:1998年,电热双极血管密封(EBVS)系统被引入,并迅速成为各种外科专业手术设备的组成部分。目前可用的EBVS器械使用剪刀状颌骨结构和关闭机构,这导致从下颌近端到远端压缩压力减少。本文介绍了一种新的EBVS系统,该系统利用不同的仪表钳口结构和关闭机构,尽管仪表钳口较长,但仍能实现更均匀的压力分布。方法:对牛子宫动脉的颌面压力分布测量和体外破裂压力测量的封闭实验结果进行了论证。此外,新的EBVS系统在犬和猪模型的体内评估,包括组织学检查提出。结果:该装置显示压力均匀分布在整个颌长。离体破裂压力测量显示,平均破裂压力高于300毫米汞柱,与测试血管的外径(1至7毫米)无关。术后21天对封闭血管的组织学评估显示血管的密封和融合无邻近组织损伤。结论:均匀的压力分布导致足够的组织密封,结合新颖的闭合机制和延长的下颌长度,将新型设备与其他可用的EBVS系统区分开来。这可能会减少整个手术时间,这需要在临床研究中进一步评估。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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