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首页> 外文期刊>Investigative ophthalmology & visual science >Visual Pathways in Humans With Ephrin-B1 Deficiency Associated With the Cranio-Fronto-Nasal Syndrome
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Visual Pathways in Humans With Ephrin-B1 Deficiency Associated With the Cranio-Fronto-Nasal Syndrome

机译:Ephrin-B1缺乏症与颅额额鼻综合征相关的人类的视觉通路。

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Purpose: Numerous animal studies demonstrated the importance of components of the ephrin/Eph system for correct visual system development. Analogous investigations in humans are entirely missing. Here, we examined the visual system in humans with ephrin-B1 deficiency, which is x-linked and associated with the cranio-fronto-nasal syndrome (CFNS) in heterozygous females. Methods: For one male hemizygous for ephrin-B1 deficiency and three affected heterozygous females with molecular-genetically confirmed mutations, the integrity of the partial decussation of the optic nerves was assessed with visual evoked potentials (VEPs) and compared with albinotic, achiasmic, and control participants with healthy vision. Further, retinal morphology and function and the gross-retinotopic representation of the primary visual cortex were examined with spectral-domain optical coherence tomography (SD-OCT), ERG, and multifocal (mf) VEPs for the male participant and part of the carriers. Results: Strabismus and lack of stereovision was evident in the male and two of the females. Other characteristics of the visual system organization and function were normal: (1) retina: SD-OCT and funduscopy indicated normal foveal and optic nerve head morphology. Electroretinograms indicated normal retinal function, (2) optic chiasm: conventional (c)VEP showed no evidence for misrouting and mfVEPs were only suggestive of, if any, very minor local misrouting, and (3) visual cortex: mfVEP characteristics indicated normal retinotopic gross-representations of the contralateral visual hemifield in each hemisphere. Conclusions: While ephrin-B1 deficiency leads to abnormal visual pathways in mice, it leaves the human visual system, apart from deficits in binocular vision, largely normal. We presume that other components of the ephrin-system can substitute the lack of ephrin-B1 in humans.
机译:目的:大量动物研究证明了ephrin / Eph系统组成部分对于正确的视觉系统发育的重要性。完全没有进行类似的人类研究。在这里,我们检查了具有ephrin-B1缺乏症的人类的视觉系统,该系统与杂合女性的x连锁且与颅-额鼻-鼻综合症(CFNS)有关。方法:对于一名患有ephrin-B1缺乏症的男性半合子和三名受影响的具有基因遗传学证实突变的杂合子女性,使用视觉诱发电位(VEP)评估了视神经部分叠置的完整性,并将其与白化病,近视性和以健康的视力控制参与者。此外,针对男性参与者和部分携带者,通过光谱域光学相干断层扫描(SD-OCT),ERG和多焦点(mf)VEP检查了主要视觉皮层的视网膜形态和功能以及大体视网膜位点表示。结果:男性和两名女性中明显存在斜视和缺乏立体视觉。视觉系统组织和功能的其他特征是正常的:(1)视网膜:SD-OCT和眼底镜检查表明中央凹和视神经头形态正常。视网膜电图显示视网膜功能正常;(2)视交叉:常规(c)VEP没有证据表明有错误的路线,而mfVEP仅暗示(如果有的话)非常小的局部错误路线;(3)视觉皮层:mfVEP的特征表明视网膜部位正常-每个半球中对侧视觉半场的表示。结论:ephrin-B1缺乏症会导致小鼠的视觉通路异常,但除了双眼视力缺陷外,它还会离开人的视觉系统,这在很大程度上是正常的。我们认为,ephrin系统的其他组成部分可以替代人体内缺乏的ephrin-B1。

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