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清醒自由活动大鼠体感诱发电位诱发方法的评估

Evaluation of methods for eliciting somatosensory-evoked potentials in the awake, freely moving rat.

作者信息

Stienen Peter J, Haberham Zainal L, van den Brom Walter E, de Groot Harry N M, Venker-Van Haagen Anjop J, Hellebrekers Ludo J

机构信息

Department of Clinical Sciences of Companion Animals, Faculty of Veterinary Medicine, Utrecht University, PO Box 80.154, Yalelaan 8, NL-3508 TD Utrecht, Netherlands.

出版信息

J Neurosci Methods. 2003 Jun 15;126(1):79-90. doi: 10.1016/s0165-0270(03)00070-0.

Abstract

To standardise the method of eliciting somatosensory-evoked potentials (SEPs), SEPs were generated by electrical stimulation of different stimulus sites and recorded bilaterally from the primary somatosensory cortex (S1) and from midline in awake, freely moving rats. Increasing stimulus intensity enhanced amplitudes of all SEPs. At supramaximal stimulation, SEPs following vibrissae and tail stimulation (V-SEP and Ta-SEP, respectively) but not following trunk stimulation (Tr-SEP), fulfilled our criterion of signal-to-noise ratio >or=4. The first V-SEP component coincided with a stimulus artefact, disqualifying these recordings for a standard stimulation protocol. The Ta-SEP generated stable and reproducible recordings and was considered to be the preferred technique. Early components of the contralateral S1 recorded V-SEP and Tr-SEP occurred at latencies different from the other recordings. Increasing stimulus repetition rate (SRR) decreased amplitudes of all SEPs. At the highest obtainable SRR, the amplitude between the V-SEP second positive and second negative components in all recordings was 70-80% of the amplitude at 0.1 Hz, whereas peak amplitudes of subsequent components and those of the Tr-SEP and Ta-SEP were 20-50%. These results indicate that the different SEP components might be generated by different ascending neural pathways.

摘要

为使体感诱发电位(SEP)的引出方法标准化,通过对不同刺激部位进行电刺激来产生SEP,并在清醒、自由活动的大鼠双侧初级体感皮层(S1)和中线部位进行记录。增加刺激强度可增强所有SEP的波幅。在超强刺激时,触须和尾巴刺激后的SEP(分别为V-SEP和Ta-SEP),但躯干刺激后的SEP(Tr-SEP)不符合我们信噪比≥4的标准。第一个V-SEP成分与刺激伪迹重合,使这些记录不符合标准刺激方案。Ta-SEP产生了稳定且可重复的记录,被认为是首选技术。对侧S1记录的V-SEP和Tr-SEP的早期成分出现的潜伏期与其他记录不同。增加刺激重复率(SRR)会降低所有SEP的波幅。在可获得的最高SRR时,所有记录中V-SEP第二个正向和第二个负向成分之间的波幅为0.1 Hz时波幅的70 - 80%,而后续成分以及Tr-SEP和Ta-SEP的峰值波幅为20 - 50%。这些结果表明,不同的SEP成分可能由不同的上行神经通路产生。

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