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Surgical Efficacy Among Laparoscopic Ultrasonic Dissectors: Are We Advancing Safely? A Review of Literature

机译:腹腔镜超声解剖器的手术疗效:我们是否安全前进?文学评论

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The specialty of laparoscopy has evolved with the advent of new technologies over the last few years. Energy-based devices and Ultrasonic dissectors are used with a lot of factors in play-including ergonomics and economics during surgery. Here an attempt is based to review the surgical efficacy and safety of these dissectors with importance to plume production and lateral thermal damage. The factors contributing to adversities to the dissectors are also to be noted. The strategy adopted was aimed at finding relevant studies from PubMed from 1995 to 2014. The basic principle of plume production and thermal damage are studied in this review. Factors contributing to the same that can lead to adversities during laparoscopic surgeries are identified. Summarizing key points that increase lateral thermal damage and plume production amongst different ultrasonic shears and suggesting a technique to identify the right balance between the existing dissectors was possible. The RF Device and USS are both useful and widely used and are more safer than monopolar devices. RF Device is considerably slower than USS, as it cannot achieve coagulation and cutting at the same time. Although USS definitely improvises dissection and has less thermal injury than RF Device, the clinical implications in balancing dissection efficacy with hemostasis need to be investigated further. The ideal haemostatic energy-based shear device would be one with excellent hemostatic results and visual acuity while allowing none or minimal thermal energy escape at the point of application. In our current setting, a combined use of both RF and USS device usage as applied in the particular situations has potential.
机译:在过去几年中,随着新技术的出现,腹腔镜检查的专长得到了发展。基于能量的设备和超声波解剖器在游戏过程中受多种因素影响,包括人体工程学和经济性。这里的尝试是基于对这些解剖器的手术效果和安全性的重视,以评估羽流的产生和侧向热损伤的重要性。还应注意造成解剖器患难的因素。所采取的策略旨在寻找1995年至2014年PubMed的相关研究。本文对烟羽产生和热损伤的基本原理进行了研究。确定了在腹腔镜手术中可能导致逆境的因素。总结了在不同的超声波剪切机中增加侧向热损伤和羽流产生的关键点,并提出了一种确定现有解剖器之间正确平衡的技术。 RF设备和USS既有用又广泛使用,并且比单极设备更安全。 RF设备比USS慢得多,因为它无法同时实现凝结和切割。尽管USS绝对比RF Device改进了解剖并且热损伤更少,但是在平衡解剖效果和止血之间的临床意义还需要进一步研究。理想的基于止血能量的剪切装置将是一种具有出色的止血效果和视觉敏锐度,同时在应用时不会或仅有最小的热能逸出的装置。在我们当前的设置中,在特定情况下同时使用RF和USS设备的使用是有潜力的。

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