S. Aydoğdu, Ali Koçyi̇ği̇t
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摘要

本研究的目的是利用卡瓦列里原理计算阿卡拉曼绵羊和毛山羊的小脑体积。研究对象为12只1 ~ 2岁健康雄性动物(6只绵羊和6只山羊)的小脑。用灵敏电子天平计算从菱形脑中分离出来的小脑重量,用阿基米德原理计算其体积。在用卡瓦列里原理进行体积测量时,用8%琼脂堵塞小脑,以防止切片时组织损失。用600 dpi分辨率的水平扫描仪扫描染色切片。在ImageJ软件中,将点计数网格放在截面上,分别计算灰质和白质体积。绵羊和山羊的小脑重量分别为11.6和12.55克。小脑重量与脑总重量之比计算为0.10。结果表明,绵羊小脑的平均重量约占全脑重量的9.8%。在山羊中,观察到小脑占大脑的10.11%。绵羊的灰质和白质体积分别为6.75 ml和3.36 ml。山羊的灰质和白质体积分别为6.80 ml和3.82 ml。绵羊和山羊的小脑总容积分别为10.14 ml和10.65 ml。绵羊小脑体积中灰质占65.55%,白质占33.08%。山羊小脑灰质占63.88%,白质占35.85%。两种动物体积测量结果差异无统计学意义(p>0.05)。近年来,农场动物的神经退行性疾病模型有所增加。这些疾病可引起小脑容量的变化。在这种情况下,认为本研究中从健康绵羊和山羊小脑中获得的体积值将对未来的研究具有重要意义
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Akkaraman koyunu ve Kıl keçisinde Cavalieri prensibi kullanılarak cerebellum hacminin hesaplanması
The aim of this study is to calculate the cerebellum volume in Akkaraman sheep and Hair goat using the Cavalieri's principle. Cerebellum of 12 healthy 1-2 year old male animals (6 sheep and 6 goats) were used in the study. The weight of the cerebellum separated from the rhombencephalon was calculated with a sensitive electronic balance, and its volume was calculated with Archimedes' principle. In the volume measurement to be made with Cavalieri's principle, the cerebellum was blocked with 8% agar to prevent tissue loss during slicing. The stained sections were scanned with a horizontal scanner at 600 dpi resolution. Gray matter and white matter volume were calculated separately by dropping the point counting grid on cross sections in ImageJ software. Cerebellum weight was calculated as 11.6 gr in sheep and 12.55 gr in goats. The ratio of cerebellum weight to total brain weight was calculated as 0.10 in both species. It was observed that the cerebellum weighs an average of 9.8% of the total brain weight in sheep. In the goat, it was observed that the cerebellum constituted 10.11% of the brain. Gray matter and white matter volumes were calculated as 6.75 ml and 3.36 ml in sheep, respectively. In the goat, the gray matter and white matter volumes were measured as 6.80 ml and 3.82 ml, respectively. Total cerebellum volume was found to be 10.14 ml and 10.65 ml in sheep and goats, respectively. In sheep, 65.55% of the cerebellum volume consisted of gray matter and 33.08% of white matter. In goats, 63.88% of the cerebellum consisted of gray matter and 35.85% of white matter. No statistical difference was observed in the volume measurement results obtained in both species (p>0.05). In recent years, there has been an increase in neurodegenerative disease models in farm animals. These diseases can cause changes in the volume of the cerebellum. In this context, it is thought that the volume values obtained from healthy sheep and goat cerebellum in the current study will be important for future studies
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