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Diffusion Tensor Magnetic Resonance Imaging and Tract-Tracing Analysis of Probst Bundle Structure in Netrin1- and DCC-Deficient Mice

机译:Netrin1和DCC缺陷小鼠的弥散张量磁共振成像和最佳束结构的道迹分析

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摘要

In many cases of callosal dysgenesis in both human patients and mouse models, misguided fibers from the cortex form abnormal bilateral, barrel-shaped structures known as Probst bundles. Because little is known about how axons are arranged within these anomalous fiber bundles, understanding this arrangement may provide structural and molecular insights into how axons behave when they are misguided in vivo. Previous studies described these bundles as longitudinal swirls of axons that fail to cross the midline (). However, recent studies on human acallosal patients using diffusion tensor magnetic resonance imaging (DTMRI) technology suggest that axons project in an anteroposterior direction within the Probst bundle (; ). This led us to ask the question, is DTMRI an accurate method for analyzing axonal tracts in regions of high axon overlap and disorganization, or is our current perception of axon arrangement within these bundles inaccurate? Using DTMRI, immunohistochemistry, and carbocyanine dye tract-tracing studies, we analyzed the Probst bundles in both Netrin1 and deleted in colorectal cancer (DCC) mutant mice. Our findings indicate that DTMRI can accurately demonstrate fiber tract orientation and morphology where axons are in ordered arrays such as in the dorsal part of the bundle. In ventral areas, where the axons are disorganized, no coordinated diffusion is apparent via DTMRI. In these regions, a higher-resolution approach such as tract tracing is required. We conclude that in DCC and Netrin1 mutant mice, guidance mechanisms remain in the dorsal part of the tract but are lost ventrally.
机译:在人类患者和小鼠模型的许多骨os发育不全的情况下,来自皮层的错误引导的纤维会形成异常的双侧桶状结构,称为Probst束。由于对轴突在这些异常纤维束中的排列方式知之甚少,因此了解这种排列方式可能会为轴突在体内被错误引导时的行为提供结构和分子方面的见解。先前的研究将这些束描述为轴突的纵向漩涡,无法穿过中线()。但是,最近使用弥散张量磁共振成像(DTMRI)技术对人类a骨患者进行的研究表明,轴突在Probst束中沿前后方向突出;()。这导致我们提出一个问题,DTMRI是分析高轴突重叠和混乱区域中轴突束的准确方法,还是我们目前对这些束中轴突排列的认识不准确?使用DTMRI,免疫组化和碳花青染料道追踪研究,我们分析了Netrin1和结直肠癌(DCC)突变小鼠中删除的Probst束。我们的发现表明,DTMRI可以准确显示轴突呈有序阵列(例如束的背侧部分)的纤维束方向和形态。在轴突杂乱无章的腹侧区域,通过DTMRI观察不到协调的扩散。在这些地区,需要更高分辨率的方法,例如道追踪。我们得出的结论是,在DCC和Netrin1突变小鼠中,引导机制保留在该道的背侧,但在腹侧丢失。

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