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首页> 外文期刊>Investigative ophthalmology & visual science >The detection of both global motion and global form is disrupted in glaucoma.
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The detection of both global motion and global form is disrupted in glaucoma.

机译:青光眼破坏了整体运动和整体形式的检测。

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PURPOSE: It is well known that glaucoma results in performance impairments on tasks processed early in the visual pathways. Glaucoma should also impair cortical visual processing because of reduced input from retinal ganglion cells and also possibly because of abnormal cortical function. This study was undertaken to assess whether cortically processed global percepts are disrupted in glaucoma in areas of visual field classified as normal by standard automated perimetry (SAP). Performance on global tasks (motion and form) was compared to measures of presumed precortical magnocellular and parvocellular function in the same individuals. METHODS: Fifteen control subjects and 12 patients with primary open-angle glaucoma participated. Testing was performed foveally and midperipherally (12.5 degrees). Contrast-discrimination thresholds were measured by using the steady-pedestal (magnocellular) and pulsed-pedestal (parvocellular) contrast-discrimination tasks of Pokorny and Smith. Global motion coherence and global form coherence thresholds were measured at high and low contrast. RESULTS: Patients with glaucoma demonstrated higher global motion and form-coherence thresholds than did control subjects for targets presented in the midperiphery (P < 0.05), but not foveally. Different individuals performed poorly on the motion and form tasks. The subjects with the greatest presumed magnocellular and parvocellular loss were those with the largest deficits on the global motion and form tasks, respectively. CONCLUSIONS: Some subjects with glaucoma demonstrate profound impairments of global motion or global form integration in areas of visual field classified as normal by SAP. This finding implies that some people with glaucoma may have far greater difficulty with complex visual tasks (for example, navigation through the environment or face recognition) than is predicted by their visual field loss.
机译:目的:众所周知,青光眼会导致视觉通路早期处理任务的性能受损。青光眼还应该削弱视网膜神经节细胞的输入,还可能因为皮质功能异常而损害皮质的视觉处理。这项研究的目的是评估在通过标准自动视野检查(SAP)分类为正常的视野中,在青光眼中是否破坏了皮质处理的全局感知。将在总体任务(运动和形式)上的表现与在同一个人中估计的皮质前的巨细胞和小细胞功能进行比较。方法:15例对照者和12例原发性开角型青光眼患者参加。测试是从中央和周围(12.5度)进行的。通过使用Pokorny和Smith的稳定基座(磁性细胞)和脉冲基座(小细胞)对比度区分任务来测量对比度区分阈值。在高和低对比度下测量全局运动相干性和全局形式相干性阈值。结果:青光眼患者表现出的整体运动和形态连贯性阈值高于对照组,在中外周呈现目标(P <0.05),但不是中央凹。不同的人在运动和形式任务上表现不佳。预计最大的细胞丢失和小细胞丢失的受试者分别是总体运动和形式任务的缺陷最多的受试者。结论:一些患有青光眼的受试者在被SAP分类为正常的视野中表现出严重的整体运动或整体形式整合受损。这一发现表明,某些青光眼患者在完成复杂的视觉任务(例如,在环境中导航或面部识别)时遇到的困难可能比视野丧失所预测的困难更大。

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