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Comparative anatomy of the pig brain : an integrative magnetic resonance imaging (MRI) study of the porcine brain with special emphasis on the external morphology of the cerebral cortex

机译:猪脑比较解剖:猪脑的综合磁共振成像(MRI)研究,特别侧重于大脑皮层的外部形态

摘要

For this study the healthy brains of the domestic pigs are examined post mortem. MRI (magnetic resonance imaging) scans in transverse, sagittal and dorsal orientation (native and formalin fixed) are produced with a 1.0 Tesla scanner. 12 sagittal, 13 dorsal and 22 transverse scans are selected and labelled to produce a MRI picture atlas of the porcine brain. With the aid of the graphical software programs AMIRA® and AVIZO® (Mercury Computer Systems Inc.) it was possible to identify brain structures (like nuclei) and to locate and describe the sulci of the porcine brain in MRI. These graphical software programs make it possible to construct a three dimensional model of the porcine brain and to facilitate simultaneous identification of morphological features in dorsal, transverse and sagittal scans. In addition to the atlas, MRI scans of a wild boar, a Wiesenauer minipig and a babirusa are produced and compared with the scans of the domestic pig. An important result of this study is a summary and discussion of the nomenclature of the sulci of the porcine cortex. It is now easier to match functional areas of the cortex with the corresponding structure in the MRI scan, because a standardized nomenclature for the sulci of the porcine brain does not exist so far.This study also describes special features of the porcine brain. The porcine brain has less gyri than the brains of a variety of other ungulates. The position of the pig’s forebrain in relation to the brain stem, the strongly developed pars olfactoria of the rhinencephalon in relation to the limbic system and the topography of the pituitary gland in relation to the diencephalon, are also different from the other featured species. It is furthermore possible to identify a physiological aplasia of the cerebellar cortex of the tuber region in the MRI scans of the porcine brain.In the featured members of the suidae (pigs and babirusa) the system of gyri and sulci shows little variation. Most sulci and their position are constant. The shape of the brain differs between the brachycephalic breeds (such as the Wiesenauer minipig) and the dolichocephalic hybrid pigs (bread for meat production). The brain of the Wiesenauer minipig is shorter and rounder compared with the brains of the scanned hybrid pigs. However, the surface structures of brachycephalic and dolichocephalic pig brains show only little difference.
机译:为了进行这项研究,在死后检查了家猪的健康大脑。使用1.0 Tesla扫描仪进行横向,矢状和背侧(天然和福尔马林固定)的MRI(磁共振成像)扫描。选择12个矢状,13个背和22个横向扫描并标记以产生猪脑的MRI图像图谱。借助图形软件程序AMIRA®和AVIZO®(Mercury Computer Systems Inc.),可以识别脑结构(如核),并在MRI中定位和描述猪脑的脑沟。这些图形软件程序可以构建猪脑的三维模型,并有助于同时识别背侧,横向和矢状扫描的形态特征。除地图集外,还制作了野猪,维斯瑙尔小猪和小白头翁的MRI扫描图,并将其与家猪的扫描图进行了比较。这项研究的重要结果是对猪皮层龈沟的命名法的总结和讨论。现在,在MRI扫描中更容易将皮层的功能区域与相应的结构进行匹配,因为到目前为止还没有针对猪脑沟的标准化命名法。本研究还描述了猪脑的特殊特征。猪脑的回旋比其他各种有蹄类动物的脑少。猪前脑相对于脑干的位置,鼻脑相对于边缘系统强烈发育的嗅觉嗅觉以及脑垂体相对于双脑的地形也与其他特征物种不同。在猪脑的MRI扫描中还可能鉴定出块茎区小脑皮质的生理发育不良。在特色的suidae(猪和babirusa)成员中,回旋和sulci系统几乎没有变化。大多数苏尔奇及其位置是恒定的。在短头型品种(例如Wiesenauer小型猪)和短头型杂种猪(用于生产肉的面包)之间,大脑的形状有所不同。 Wiesenauer小型猪的大脑比扫描杂种猪的大脑更短,更圆。然而,短头猪和短头猪猪脑的表面结构几乎没有差别。

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    Schmidt Verena;

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  • 年度 2015
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  • 原文格式 PDF
  • 正文语种 eng
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