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Heat production, nerve function, and morphology following nerve close dissection with surgical instruments

机译:用手术器械闭合神经后产生的热量,神经功能和形态

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Background The aim of the present study was to compare an ultrasonically activated instrument (US), monopolar electrosurgery, and bipolar electrosurgery (ES) with respect to heat production, nerve function, and nerve morphology following in vivo application. Materials and methods The biceps femoris muscle of anesthetized rats was cut in a standardized manner longitudinally 1 mm adjacent to the sciatic nerve using US shears, a monopolar ES knife, or a bipolar ES scissors. Activation time and temperature were recorded continuously within 1-4 mm of the activation site ipsilateral and contralateral to the nerve with two thermoelectric microsensors. Temperature rise and time delay of reaching the temperature maximum, as an expression of heat spread within tissue, maximum temperature, and thermal dose (equivalent time of exposure at 43°C) were measured and calculated. A total of 49 functional experiments were conducted. The electromyographic (EMG) potential was recorded distally. Nerve dysfunction was defined as more than 10% loss of the evoked EMG amplitude. Forty-eight nerves were coded and submitted to blind histopathological examination, and morphological damage was graded on a 4-grade scale. Results The maximum temperature elevation and the thermal dose were significantly higher for the bipolar ES compared with the US instrument (p = 0.024, p = 0.049), and with much less variation of results for the US instrument. The monopolar ES maximum temperature and thermal dose were lower, but a very large variation occurred, probably as a result of more random electrical spread to the ground electrode and muscle motion artifacts. Functional loss was least common in the US group - without being significant - compared to bipolar and monopolar ES. Moderate and severe morphological damage was significantly less common in the US group than in the monopolar ES group (p = 0.041). We found no statistically significant correlation between the highest temperatures and the degree of morphological damage or functional loss. Conclusions The temperature elevation depends strongly on the distance to the activated instrument. The bipolar ES scissors generates a higher maximum temperature and thermal dose with a greater variation in than the US. Functional loss and severe morphological damage were uncommon in all groups.
机译:背景技术本研究的目的是比较在体内应用后,在产热,神经功能和神经形态方面,超声激活器械(US),单极电外科和双极电外科(ES)。材料和方法使用US剪刀,单极ES刀或双极ES剪刀以标准化方式在坐骨神经附近纵向1mm切开麻醉大鼠的股二头肌。用两个热电微传感器连续记录在神经同侧和对侧激活部位1-4毫米内的激活时间和温度。测量并计算出温度上升和达到最高温度的时间延迟,以组织内的热量散布,最高温度和热剂量(相当于43°C的暴露时间)的形式表示。总共进行了49次功能实验。远端记录肌电图(EMG)电位。神经功能障碍定义为诱发的EMG振幅损失超过10%。对48条神经进行编码,并进行盲目组织病理学检查,并对形态学损伤进行4级评分。结果与美国仪器相比,双极ES的最大温度升高和热剂量显着更高(p = 0.024,p = 0.049),并且美国仪器的结果差异较小。单极ES的最高温度和热剂量较低,但发生了很大的变化,这可能是由于更多的随机电扩散到接地电极和肌肉运动伪影所致。与双极和单极ES相比,功能丧失在美国组中最不常见,但无统计学意义。与单极ES组相比,美国组的中度和严重形态损害明显较少(p = 0.041)。我们发现最高温度与形态损害或功能丧失程度之间无统计学意义的相关性。结论温度升高在很大程度上取决于到激活仪器的距离。与美国相比,双极ES剪刀产生更高的最高温度和热剂量,且变化更大。在所有组中,功能丧失和严重的形态损害并不常见。

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