[周围神经刺激器在神经丛阻滞实施中的作用]。

IF 1.9 Q2 POLITICAL SCIENCE
Regional-Anaesthesie Pub Date : 1990-09-01
H Kaiser, H C Niesel, V Hans, L Klimpel
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引用次数: 0

摘要

选择了八家不同制造商提供的九种进行周围神经刺激的仪器,检查了它们的适用性,安全性和操作便利性,并与参考理论和实践方面出现的理想特性进行了比较和对比。欧姆电阻的测量表明,在临床相关的脉冲幅度范围内(0.1-1.0 mA),仪器的调节质量变化很大。有些仪器发出的实际电脉冲与调整的理论值偏差太大,必须认为是不合适的。脉冲的持续时间只有两种仪器符合制造商的规格。有四种仪器没有产生单相方波信号,尽管在使用说明中有相反的说法,还有一种仪器确实产生了这样的信号,尽管制造商描述了“特殊的双相不对称”脉冲。信号开始时的脉冲超调,信号结束时的正范围振荡以及信号过程中的电流下降都是其他仪器在技术上设计不足的形式变体。复杂的身体电阻(阻抗)产生的方波电流脉冲的阻力,很好地近似于预期的数学e函数,可以证明在上升的信号侧面,而在下降的侧面下部的信号曲线比预期的平坦,由于身体组织的极化效应。计算得到的信号曲线的特征电压值和时间值如表所示。(摘要删节250字)
本文章由计算机程序翻译,如有差异,请以英文原文为准。
[The function of peripheral nerve stimulators in the implementation of nerve and plexus blocks].

A selection of nine instruments supplied by eight different manufacturers for carrying out peripheral nerve stimulation were checked for their suitability, safety and ease of operation, and were compared and contrasted with reference to a spectrum of characteristics that appear desirable in theoretical and practical terms. Measurements at Ohm's resistance showed that in the clinically relevant range of impulse amplitudes (0.1-1.0 mA) the quality of adjustment of the instruments varied widely. The actual electrical impulse delivered by some of the instruments deviated so widely from the adjusted theoretical value that they must be regarded as unsuitable. The duration of the impulse corresponded to the manufacturer's specifications for only two instruments. Four instruments did not generate a monophasic square-wave signal despite assertions to the contrary in the instructions for use, and one instrument did generate such a signal although a "special biphasic asymmetrical" impulse is described by the manufacturer. Impulse-like overshooting at the beginning of the signal, oscillations into the positive range at the end of the signal and fall in current during the course of the signal were the form variants indicating technically inadequate design in the other instruments. Resistance to the square-wave current impulse engendered by the complex body resistance (impedance), a good approximation to the mathematical e-function to be expected, could be demonstrated for the rising signal flank, whereas the signal curve in the lower part of the descending flank was flatter than expected owing to polarization effects in the body tissue. The characteristic voltage and time values calculated for the signal curves are shown in tables.(ABSTRACT TRUNCATED AT 250 WORDS)

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CiteScore
3.50
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