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Volumes of brain structures in captive wild-type and laboratory rats: 7T magnetic resonance in vivo automatic atlas-based study

机译:圈养野生型和实验大鼠脑结构的体积:基于体内7T磁共振自动图谱的研究

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摘要

Selective breeding of laboratory rats resulted in changes of their behavior. Concomitantly, the albino strains developed vision related pathologies. These alterations certainly occurred on the background of modifications in brain morphology. The aim of the study was to assess and compare volumes of major structures in brains of wild-captive, laboratory albino and laboratory pigmented rats. High resolution T2-weighted images of brains of adult male Warsaw Wild Captive Pisula-Stryjek rats (WWCPS, a model of wild type), laboratory pigmented (Brown Norway strain, BN) and albino rats (Wistar strain, WI) were obtained with a 7T small animal-dedicated magnetic resonance tomograph. Volume quantification of whole brains and 50 brain structures within each brain were performed with the digital Schwarz rat brain atlas and a custom-made MATLAB/SPM8 scripts. Brain volumes were scaled to body mass, whereas volumes of brain structures were normalized to individual brain volumes. Normalized brain volume was similar in WWCPS and BN, but lower in WI. Normalized neocortex volume was smaller in both laboratory strains than in WWCPS and the visual cortex was smaller in albino WI rats than in WWCPS and BN. Relative volumes of phylogenetically older structures, such as hippocampus, amygdala, nucleus accumbens and olfactory nuclei, also displayed certain strain-related differences. The present data shows that selective breeding of laboratory rats markedly affected brain morphology, the neocortex being most significantly altered. In particular, albino rats display reduced volume of the visual cortex, possibly related to retinal degeneration and the development of blindness.
机译:实验鼠的选择性繁殖导致其行为发生变化。伴随地,白化病菌株发展了与视觉有关的病理。这些改变当然是在脑形态改变的背景下发生的。这项研究的目的是评估和比较野生圈养,实验室白化病和有色大鼠的大脑主要结构的体积。分别使用成年雄性华沙野生圈养Pisula-Stryjek大鼠(WWCPS,野生型模型),实验室色素(棕色挪威菌株,BN)和白化病大鼠(Wistar菌株,WI)的大脑高分辨率T2加权图像。 7T小动物专用磁共振断层扫描仪。使用数字Schwarz大鼠脑图集和定制的MATLAB / SPM8脚本对全脑和每个大脑中的50个脑结构进行体积量化。脑体积与体重成比例,而脑结构体积与单个脑体积标准化。 WWCPS和BN中标准化的脑容量相似,而WI中较低。在两种实验室菌株中,归一化的新皮层体积均小于WWCPS,而在白化WI大鼠中,视觉皮层小于WWCPS和BN。系统发育较老的结构(如海马,杏仁核,伏伏核和嗅核)的相对体积也显示出某些与菌株相关的差异。目前的数据表明,实验大鼠的选择性繁殖显着影响了大脑的形态,新皮层的变化最为明显。特别是,白化病大鼠的视皮层体积减少,可能与视网膜变性和失明有关。

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