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高磁场对大鼠行为反应的头端作用部位的证据。

Evidence for a cephalic site of action of high magnetic fields on the behavioral responses of rats.

作者信息

Houpt Thomas A, Cassell Jennifer A, Cason Angie M, Riedell Andi, Golden Glen J, Riccardi Christina, Smith James C

机构信息

Department of Biological Science, Program in Neuroscience, The Florida State University, Tallahassee, FL 32306-4340, United States.

出版信息

Physiol Behav. 2007 Nov 23;92(4):665-74. doi: 10.1016/j.physbeh.2007.05.011. Epub 2007 May 18.

Abstract

Static high magnetic fields (MFs) from 7 T to 9 T can elicit behavioral responses in rodents such as suppression of rearing, locomotor circling, and acquisition of a conditioned taste aversion (CTA). MF exposure also induces c-Fos expression in the visceral and vestibular nuclei of the brainstem, suggesting the stimulation of some sensory pathways. It is not clear, however, if the effects of the MF are caused by exposure to the uniform maximal field at the center of the magnet, or by exposure to the steep field gradients along the bore of the magnet during the rat's placement. In addition, the site of action within the rat is unknown. In an attempt to limit MF exposure to rostral or caudal portions of the rats' body, we exposed male and female rats at different positions within the bore of a 14.1-T superconducting magnet ranging from 2 cm (1.6 T at the head) to 155 cm (0.05 T at the head), with the center of the bore at 65 cm (14.1 T across the whole body). This approach also allowed us to expose rats to the maximal field strength (14.1 T) vs. the maximal field gradients (54 T/m). To assess both immediate and delayed behavioral effects, locomotor and CTA responses were recorded. A small but significant CTA was seen after exposure of the head to the lowest MF tested (0.05 T at 155 cm). Graded effects were seen, however, with greater circling and CTA acquisition as the MF strength increased at the rostral end of the rat. This suggests a cephalic site of action. Furthermore, maximal circling and CTA were induced after exposure to the uniform center field, and not after exposure to high field gradients on either side of the center. This suggests that the behavioral responses seen after MF exposure are a consequence of the uniform static field at the center of the magnet, and are not caused by passage through, or exposure to, the vertical field gradients. Female rats responded similarly to male rats, although magnet-induced CTA appeared resistant to extinction in female rats.

摘要

7T至9T的静态强磁场(MFs)可引发啮齿动物的行为反应,如抑制竖毛、运动性转圈以及获得条件性味觉厌恶(CTA)。暴露于MFs还会诱导脑干内脏和前庭核中c-Fos的表达,这表明某些感觉通路受到了刺激。然而,尚不清楚MFs的影响是由暴露于磁体中心的均匀最大磁场引起的,还是由大鼠放置过程中沿磁体孔的陡峭磁场梯度暴露引起的。此外,大鼠体内的作用部位尚不清楚。为了限制大鼠身体头端或尾端暴露于MFs,我们将雄性和雌性大鼠暴露于14.1T超导磁体孔内的不同位置,范围从2cm(头部为1.6T)到155cm(头部为0.05T),磁体孔中心位于65cm处(全身为14.1T)。这种方法还使我们能够让大鼠暴露于最大场强(14.1T)与最大场梯度(54T/m)之下。为了评估即时和延迟的行为影响,记录了运动和CTA反应。在头部暴露于测试的最低MF(155cm处为0.05T)后,观察到了一个小但显著的CTA。然而,随着大鼠头端MF强度的增加,出现了分级效应,转圈和CTA获得增加。这表明作用部位在头部。此外,暴露于均匀中心场后诱导出最大的转圈和CTA,而不是暴露于中心两侧的高场梯度后。这表明MF暴露后观察到的行为反应是磁体中心均匀静磁场的结果,而不是由穿过或暴露于垂直场梯度引起 的。雌性大鼠的反应与雄性大鼠相似,尽管磁体诱导的CTA在雌性大鼠中似乎不易消退。

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