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首页> 外文期刊>Journal of pediatric ophthalmology and strabismus >Neural circuit involved in idiopathic infantile nystagmus syndrome based on fMRI
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Neural circuit involved in idiopathic infantile nystagmus syndrome based on fMRI

机译:基于fMRI的特发性婴幼儿眼震综合征的神经回路

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Purpose: To identify the neural circuitry of idiopathic infantile nystagmus syndrome (INS), characterized by an early onset alternating series of slow and rapid eye movements that can manifest in different waveforms and genetic lines. The neural circuitry of INS is currently unknown. Methods: A novel functional magnetic resonance imaging (fMRI) method, referred to as the null zone fMRI technique, was used to identify the neural circuitry for INS. In the null zone fMRI technique, a gaze position with minimal nystagmus within the null zone was linked to the fMRI "off" condition and a gaze position with robust nystagmus outside of the null zone was linked to the fMRI "on" condition. Eye movements were monitored with an fMRI compatible eye tracker and observed in real time to ensure subject compliance in "on" and "off" states. Subjects with INS (n = 4) included three family members (a mother and two daughters) with presumed autosomal dominant INS, as well as age- and gender-matched normal controls (n = 3). Results: Three of four subjects with INS demonstrated significant increased activation of the declive of the cerebellum, whereas no normal subjects under identical conditions showed activation of the declive of the cerebellum. Both groups showed significant activation in the occipital lobe (Brodmann areas 17, 18, 19, and cuneus). Conclusion: A novel fMRI method demonstrated that the declive of the cerebellum is actively involved in INS. These are the first results to identify the cerebellum, and specifically the declive, as a possible site involved in the ocular motor dysfunction known as INS.
机译:目的:确定特发性婴儿眼球震颤综合征(INS)的神经回路,其特征是早期发作的一系列缓慢和快速的眼球运动交替出现,可表现为不同的波形和遗传系。 INS的神经回路目前未知。方法:一种新颖的功能磁共振成像(fMRI)方法,称为零区fMRI技术,用于识别INS的神经回路。在无效区域fMRI技术中,在无效区域内具有最小眼球震颤的凝视位置与fMRI“关闭”条件相关,在无效区域之外具有健壮眼球震颤的注视位置与fMRI“开启”条件相关。用功能兼容的fMRI眼动仪监测眼球运动,并实时观察以确保受试者在“开”和“关”状态下的依从性。 INS的受试者(n = 4)包括三个常染色体显性INS的家庭成员(母亲和两个女儿),以及年龄和性别匹配的正常对照(n = 3)。结果:四名患有INS的受试者中有三名显示出小脑下垂的激活明显增加,而在相同条件下没有正常受试者显示出小脑下垂的激活。两组均显示枕叶有明显激活(Brodmann区17、18、19和楔形区)。结论:一种新颖的功能磁共振成像方法表明小脑蜕皮是积极参与INS。这些是鉴定小脑,特别是the体的第一个结果,可能是参与眼运动功能障碍的可能部位,称为INS。

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