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大鼠电流刺激阈值的神经仪测量

Neurometer measurement of current stimulus threshold in rats.

作者信息

Kiso T, Nagakura Y, Toya T, Matsumoto N, Tamura S, Ito H, Okada M, Yamaguchi T

机构信息

Neuroscience Research, Pharmacology Laboratories, Institute for Drug Discovery Research, Yamanouchi Pharmaceutical Co., Ltd., 21 Miyukigaoka, Tsukuba, Ibaraki 305-8585, Japan.

出版信息

J Pharmacol Exp Ther. 2001 Apr;297(1):352-6.

Abstract

We examined the current stimulus threshold in rats with the Neurometer, a device used clinically for measuring perception and pain thresholds. Although many studies have indicated the usefulness of this device in the quantification of nerve dysfunction in patients, we have found no published reports on the use of the Neurometer in animals. Transcutaneous nerve stimuli of the three sine-wave pulses produced by the Neurometer (at 2000, 250, and 5 Hz) were applied to plantar surface of rats. The intensity of each stimulation at which rats vocalized or were hardly startled was defined as the current stimulus threshold. With repeated stimulation, the thresholds were almost constant. Repeated topical application to the area around the stimulating electrode of a high concentration of capsaicin, which acts on small-diameter fibers, increased the thresholds at 250 and 5 Hz, but did not affect the 2000-Hz threshold. Intravenous morphine (2-5 mg/kg) increased all three thresholds, whereas intrathecal morphine (20 or 80 microg) increased only the 5-Hz threshold. Intravenous injection of a minor tranquilizer, diazepam, at 1 mg/kg raised the thresholds at 2000 and 250 Hz, but did not affect the 5-Hz threshold. Higher dose of diazepam increased all three thresholds. These results suggest that the Neurometer makes possible selective examination of subsets of nerve fibers that differ in diameter not only in humans but also in animals. The present study in rats, in which we established a method of measurement, may provide helpful suggestions for the interpretation of data in humans.

摘要

我们使用Neurometer检查了大鼠的当前刺激阈值,该设备临床上用于测量感知和疼痛阈值。尽管许多研究表明该设备在量化患者神经功能障碍方面有用,但我们尚未发现关于在动物中使用Neurometer的已发表报告。将Neurometer产生的三个正弦波脉冲(2000、250和5Hz)的经皮神经刺激施加到大鼠的足底表面。将大鼠发声或几乎未受惊吓时的每次刺激强度定义为当前刺激阈值。随着重复刺激,阈值几乎恒定。对作用于小直径纤维的高浓度辣椒素在刺激电极周围区域进行反复局部应用,可提高250和5Hz时的阈值,但不影响2000Hz阈值。静脉注射吗啡(2-5mg/kg)可提高所有三个阈值,而鞘内注射吗啡(20或80μg)仅提高5Hz阈值。静脉注射1mg/kg的小剂量镇静剂地西泮可提高2000和250Hz时的阈值,但不影响5Hz阈值。更高剂量的地西泮可提高所有三个阈值。这些结果表明,Neurometer不仅在人类中,而且在动物中都能够对不同直径的神经纤维亚群进行选择性检查。我们在大鼠中建立测量方法的本研究可能为解释人类数据提供有用的建议。

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