Suppr超能文献

用吸引电极记录的神经复合动作电位:理论与实验分析

Compound action potential of nerve recorded by suction electrode: a theoretical and experimental analysis.

作者信息

Stys P K, Ransom B R, Waxman S G

机构信息

Department of Neurology, Yale University School of Medicine, New Haven, CT 06510.

出版信息

Brain Res. 1991 Apr 12;546(1):18-32. doi: 10.1016/0006-8993(91)91154-s.

Abstract

Suction electrodes are widely used for recording compound action potentials (CAPs) from peripheral nerves or central tracts. Unfortunately, the recordings obtained with suction electrodes often vary over time, making quantitative measurement of CAP amplitude difficult. We developed an equivalent electrical model which predicts that the magnitude of a recorded potential will be linearly related to the resistance of the electrode with a nerve inserted. Mathematical procedures were developed that allow correction of virtually all variability inherent in this type of recording; this variability may arise from resistance drift, variable stimulus artifact, or potentials generated as a result of the current of injury. The validity of the theoretical analysis was confirmed experimentally using rat optic nerves. The magnitude of the CAP and electrode resistance varied spontaneously by as much as 100% over time, due to changes in electrode resistance and size of the stimulus artifact. Because the CAP was linearly related to resistance, it was therefore best quantified by the slope computed from this relationship. The stimulus artifact, unlike the CAP itself, was shown to be independent of recording electrode resistance and therefore only resulted in a variable offset to the area vs resistance linear relationship; the slope of this relationship was unaffected. In the absence of stimulation, a steady negative DC potential was recorded from the optic nerve, which was greatest immediately after dissection, and was also a linear function of electrode resistance. In contrast to CAP amplitude, the latencies of the component peaks within the CAP were not significantly altered by changes in electrode resistance. The experimental results confirmed the validity of the electrical model and demonstrated that suction electrodes can be a very reliable and quantitative recording method if the signals are properly corrected.

摘要

吸引电极广泛用于记录外周神经或中枢神经束的复合动作电位(CAPs)。不幸的是,使用吸引电极获得的记录常常随时间变化,使得对CAP幅度进行定量测量变得困难。我们开发了一个等效电模型,该模型预测记录电位的大小将与插入神经后的电极电阻呈线性相关。我们还开发了数学程序,可对这类记录中几乎所有固有的变异性进行校正;这种变异性可能源于电阻漂移、可变的刺激伪迹或损伤电流产生的电位。使用大鼠视神经通过实验证实了理论分析的有效性。由于电极电阻和刺激伪迹大小的变化,CAP的大小和电极电阻会随时间自发变化高达100%。由于CAP与电阻呈线性相关,因此最好通过根据这种关系计算出的斜率进行量化。与CAP本身不同,刺激伪迹与记录电极电阻无关,因此只会导致面积与电阻线性关系出现可变偏移;这种关系的斜率不受影响。在无刺激的情况下,从视神经记录到稳定的负直流电位,该电位在解剖后立即最大,并且也是电极电阻的线性函数。与CAP幅度不同,CAP内各成分峰的潜伏期不会因电极电阻的变化而显著改变。实验结果证实了电模型的有效性,并表明如果对信号进行适当校正,吸引电极可以成为一种非常可靠的定量记录方法。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验