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首页> 外文期刊>International journal of developmental neuroscience: the official journal of the International Society for Developmental Neuroscience >Effect of prenatal loud music and noise on total number of neurons and glia, neuronal nuclear area and volume of chick brainstem auditory nuclei, field L and hippocampus: A stereological investigation
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Effect of prenatal loud music and noise on total number of neurons and glia, neuronal nuclear area and volume of chick brainstem auditory nuclei, field L and hippocampus: A stereological investigation

机译:产前大声音乐和噪音对雏鸡脑干听觉核,L区和海马神经元和神经胶质总数,神经元核面积和体积的影响:一项体视学研究

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The present study explores whether prenatal patterned and unpatterned sound of high sound pressure level (110. dB) has any differential effect on the morphology of brainstem auditory nuclei, field L (auditory cortex analog) and hippocampus in chicks (Gallus domesticus). The total number of neurons and glia, mean neuronal nuclear area and total volume of the brainstem auditory nuclei, field L and hippocampus of post-hatch day 1 chicks were determined in serial, cresyl violet-stained sections, using stereology software. All regions studied showed a significantly increased total volume with increase in total neuron number and mean neuronal nuclear area in the patterned music stimulated group as compared to control. Contrastingly the unpatterned noise stimulated group showed an attenuated volume with reduction in the total neuron number. The mean neuronal nuclear area was significantly reduced in the auditory nuclei and hippocampus but increased in the field L. Glial cell number was significantly increased in both experimental groups, being highest in the noise group. The brainstem auditory nuclei and field L showed an increase in glia to neuron ratio in the experimental groups as compared to control. In the hippocampus the ratio remained unaltered between control and music groups, but was higher in the noise group. It is thus evident that though the sound pressure level in both experimental groups was the same there were differential changes in the morphological parameters of the brain regions studied, indicating that the characteristics of the sound had a role in mediating these effects.
机译:本研究探讨了高声压级(110. dB)的产前模式和非模式声音对雏鸡(Gallus domesticus)的脑干听觉核,场L(听觉皮层类似物)和海马的形态是否有任何差异影响。使用立体视觉软件,在连续的,甲酚紫染色的切片中确定孵化后第1天小鸡的神经元和胶质细胞总数,平均神经元核面积和脑干听觉核的总体积,L场和海马。与对照组相比,图案化音乐刺激组的所有研究区域均显示总体积随着总神经元数量和平均神经元核面积的增加而显着增加。相比之下,无模式噪声刺激组的总神经元数量减少,音量减弱。平均神经元核面积在听觉核和海马区显着减少,但在野外L区增加。在两个实验组中,胶质细胞数量均显着增加,在噪声组中最高。与对照组相比,实验组的脑干听觉核和视野L的胶质与神经元比率增加。在海马中,对照组和音乐组之间的比率保持不变,但在噪声组中更高。因此,很明显,尽管两个实验组的声压水平相同,但是所研究的大脑区域的形态学参数却存在差异,表明声音的特性在介导这些作用中起作用。

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