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Functional and Physical Outcomes following Use of a Flexible CO2 Laser Fiber and Bipolar Electrocautery in Close Proximity to the Rat Sciatic Nerve with Correlation to an In Vitro Thermal Profile Model

机译:功能和物理结果后使用柔性CO2激光光纤和双极电灼紧密接近于大鼠坐骨神经与体外热剖面模型的相关性

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摘要

This study compared functional and physical collateral damage to a nerve when operating a Codman MALIS Bipolar Electrosurgical System CMC-III or a CO2 laser coupled to a laser, with correlation to an in vitro model of heating profiles created by the devices in thermochromic ink agarose. Functional damage of the rat sciatic nerve after operating the MALIS or CO2 laser at various power settings and proximities to the nerve was measured by electrically evoked nerve action potentials, and histology of the nerve was used to assess physical damage. Thermochromic ink dissolved in agarose was used to model the spatial and temporal profile of the collateral heating zone of the electrosurgical system and the laser ablation cone. We found that this laser can be operated at 2 W directly above the nerve with minimal damage, while power settings of 5 W and 10 W resulted in acute functional and physical nerve damage, correlating with the maximal heating cone in the thermochromic ink model. MALIS settings up to 40 (11 W) did not result in major functional or physical nerve damage until the nerve was between the forceps tips, correlating with the hottest zone, localized discretely between the tips.
机译:这项研究比较了在操作Codman MALIS双极电外科系统CMC-III或与激光耦合的CO2激光时对神经的功能性和物理性附带损害,并与该装置在热变色油墨琼脂糖中形成的加热曲线的体外模型相关。通过电诱发的神经动作电位来测量在各种功率设置和对神经的接近度下操作MALIS或CO2激光后对大鼠坐骨神经的功能损伤,并使用神经的组织学评估物理损伤。溶解在琼脂糖中的热致变色油墨用于模拟电外科系统和激光消融锥的附带加热区域的时空分布。我们发现,该激光可以在神经正上方2 W处操作,而损伤最小,而功率设置为5 W和10 W会导致急性功能和物理神经损伤,这与热致变色墨水模型中的最大加热锥有关。 MALIS设置为40(11 withW)不会导致主要的功能或物理神经损伤,直到神经位于镊子尖端之间,并与最热的区域相关,并在尖端之间离散定位。

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