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[感觉刺激对大鼠扣带回V层锥体神经元的影响]

[Effect of sensory stimulation on the lamina V pyramidal neurons of the gyrus cinguli in the rat].

作者信息

Schönheit B, Schulz E

出版信息

Z Mikrosk Anat Forsch. 1977;91(2):334-46.

PMID:614742
Abstract

UNLABELLED

Three groups of Wistar-rats were exposed to permanent noise (80 db) during different periods in their postnatal life: the first group was exposed starting from birth for a period of four weeks, the second one from birth up to nine weeks of age and the third group from the fifth up to the ninth week postnatal. A fourth group (control animals) was reared under normal laboratory conditions. After the experiments the brains were exposed to a modified GOLGI-method. In lamina-V-pyramids of the gyrus cinguli lightmicroscopical results: length, number and distribution of spines on the main apical dendrites and on the apical dendritic branches where evaluated.

MAIN RESULTS

  1. Permanent noise during the early postnatal development phase of the brain of rats (from birth up to the fourth week of age) causes a statistically significant increase of apical spines. The spines-values are 20% above those of the control animals. 2. Permanent noise from birth up to the ninth week of age or applied only during the later postnatal period (from the fifth week up to the ninth week of age) does not significantly alterate the spines-value. 3. The results are estimated as a consequence of extreme environmental factors causing effects, comparable with an universal stress reaction. Conclusions were discussed in comparison to the results of other authors.
摘要

未标注

将三组Wistar大鼠在出生后的不同时期暴露于持续性噪音(80分贝)环境中:第一组从出生开始暴露四周;第二组从出生到九周龄暴露;第三组在出生后第五周到第九周暴露。第四组(对照动物)在正常实验室条件下饲养。实验结束后,对大脑进行改良高尔基染色法处理。在扣带回的第V层锥体神经元,通过光学显微镜观察主要顶端树突以及顶端树突分支上棘突的长度、数量和分布情况。

主要结果

  1. 在大鼠大脑出生后早期发育阶段(从出生到第四周龄)暴露于持续性噪音,会导致顶端棘突数量在统计学上显著增加。棘突数量比对照动物高出20%。2. 从出生到九周龄持续暴露于噪音环境或仅在出生后后期(从第五周到第九周龄)暴露于噪音环境,均不会显著改变棘突数量。3. 这些结果被认为是极端环境因素产生影响的结果,类似于一种全身性应激反应。结合其他作者的研究结果对结论进行了讨论。

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