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5-羟色胺能纤维局部去传入后海马θ节律的隔区诱发

Septal elicitation of hippocampal theta rhythm after localized de-afferentation of serotoninergic fibers.

作者信息

McNaughton N, Azmitia E C, Williams J H, Buchan A, Gray J A

出版信息

Brain Res. 1980 Nov 3;200(2):259-69. doi: 10.1016/0006-8993(80)90918-x.

Abstract

Previous experiments using serotonin antagonists and electrolytic raphe lesions suggest that the serotonergic input to the hippocampus inhibits low frequencey (< Hz) theta rhythm in the rat, whereas experiments using raphe stimulation suggest facilitation. The present experiments employed neurotoxic lesions of the serotonergic input to the hippocampus in an attempt to reproduce the effects of systemically administered antagonists. If the septal area is stimulated at frequencies between 6 and 10 Hz in the rat, the threshold current for driving hippocampal theta is minimum at 7.7 Hz. Systemic blockage of serotonergic synapses has been shown to shift this minimum to 6.9 Hz. In the present experiments, neurotoxic lesions were made with injections of 5,7-dihydroxytryptamine into the cingulum bundle, fornix or both. The observed effect depended on the loss of serotonin in the hippocampus, rather than the site of injection, and extensive depletion shifted the minimum to 6.9 Hz. These results indicate that the fornix and cingulum serotonergic inputs to the hippocampus are functionally homogenous, at least with respect to this response; and that the effects of systemic manipulation of serotonin systems on the septal elicitation of hippocampal theta rhythm may be attributed to changes in these two inputs.

摘要

先前使用血清素拮抗剂和电解中缝核损伤的实验表明,海马体的血清素能输入会抑制大鼠的低频(<Hz)θ节律,而使用中缝核刺激的实验则表明会促进该节律。本实验采用对海马体血清素能输入进行神经毒性损伤的方法,试图重现全身给药拮抗剂的效果。如果以6至10赫兹的频率刺激大鼠的隔区,驱动海马体θ节律的阈值电流在7.7赫兹时最小。已表明血清素能突触的全身阻断会将这个最小值移至6.9赫兹。在本实验中,通过向扣带束、穹窿或两者注射5,7-二羟基色胺造成神经毒性损伤。观察到的效果取决于海马体中血清素的丧失,而非注射部位,大量耗竭会将最小值移至6.9赫兹。这些结果表明,海马体的穹窿和扣带血清素能输入在功能上是同质的,至少就这种反应而言是如此;并且血清素系统的全身操作对隔区诱发海马体θ节律的影响可能归因于这两种输入的变化。

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