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Easy method to examine single nerve fiber excitability and conduction parameters using intact nonanesthetized earthworms

机译:使用完整的非麻醉earth检查单神经纤维兴奋性和传导参数的简便方法

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摘要

The generation and conduction of neuronal action potentials (APs) were the subjects of a cell physiology exercise for first-year medical students. In this activity, students demonstrated the all-or-none nature of AP generation, measured conduction velocity, and examined the dependence of the threshold stimulus amplitude on stimulus duration. For this purpose, they used the median giant nerve fiber (MGF) in the ventral nerve cord of the common earthworm (Lumbricus terrestris). Here, we introduce a specialized stimulation and recording chamber that the nonanesthetized earthworm enters completely unforced. The worm resides in a narrow round duct with silver electrodes on the bottom such that individual APs of the MGF can be elicited and recorded superficially. Our experimental setup combines several advantages: it allows noninvasive single fiber AP measurements taken from a nonanesthetized animal that is yet restrained. Students performed the experiments with a high success rate. According to the data acquired by the students, the mean conduction velocity of the MGF was 30.2 m/s. From the amplitude-duration relationship for threshold stimulation, rheobase and chronaxie were graphically determined by the students according to Lapicque's method. The mean rheobase was 1.01 V, and the mean chronaxie was 0.06 ms. The acquired data and analysis results are of high quality, as deduced from critical examination based on the law of Weiss. In addition, we provide video material, which was also used in the practical course.
机译:神经元动作电位(APs)的产生和传导是一年级医学生进行细胞生理学锻炼的主题。在此活动中,学生展示了AP生成的全部或全部性质,测量的传导速度,并检查了阈值刺激幅度对刺激持续时间的依赖性。为此,他们在普通earth(Lumbricus terrestris)的腹神经索中使用了正中神经纤维(MGF)。在这里,我们介绍一个专门的刺激和记录室,使未麻醉的earth完全不受力进入。蠕虫位于底部带有银电极的狭窄圆形管道中,因此可以引出并记录MGF的各个AP。我们的实验装置具有多个优点:它允许从尚未被麻醉的非麻醉动物中进行无创单纤维AP测量。学生们以很高的成功率进行了实验。根据学生获得的数据,MGF的平均传导速度为30.2 m / s。根据阈值刺激的幅度-持续时间关系,学生根据拉皮克克的方法以图形方式确定了流变碱和时轴。平均流变碱为1.01 V,平均时间轴为0.06 ms。从基于魏斯定律的严格检查得出的数据和分析结果均为高质量。此外,我们提供了视频资料,该资料也已在实际课程中使用。

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