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首页> 外文期刊>Investigative ophthalmology & visual science >Evaluation of inner retinal layers in eyes with temporal hemianopic visual loss from chiasmal compression using optical coherence tomography
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Evaluation of inner retinal layers in eyes with temporal hemianopic visual loss from chiasmal compression using optical coherence tomography

机译:利用光学相干断层扫描技术评估因as骨压迫造成颞侧偏盲性视力丧失的眼睛的内部视网膜层

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Purpose. We measured macular inner retinal layer thicknesses using frequency-domain optical coherence tomography (fd-OCT) and correlated these measures with visual field (VF) in eyes with temporal hemianopia from chiasmal compression and band atrophy (BA) of the optic nerve. Methods. Macular fd-OCT scans and VFs were obtained from 33 eyes of 33 patients with temporal hemianopia and 36 control eyes. The macular retinal nerve fiber layer (mRNFL), combined retinal ganglion cell and inner plexiform layers (RGCL+), and the inner nuclear layer (INL) were segmented. Measurements were averaged for each macula quadrant. Scans were assessed qualitatively for microcysts in the INL. The VF was estimated from the central 16 test points. The two groups were compared. Correlations between VF and OCT measurements were assessed. Results. The mRNFL, RGCL+, and total retinal (TR) macular thickness measurements were significantly smaller in BA eyes than controls. In the nasal quadrants, INL measurements were significantly greater in BA eyes than controls. The mRNFL and RGCL+ measurements had greater discrimination ability than TR measurements in the temporal quadrants. A significant correlation was found between most OCT parameters and their corresponding VF parameters. The strongest association was observed between RNFL and RGCL+ thickness, and VF loss in the corresponding area. The INL microcysts were found in seven eyes with BA, but not in controls. Conclusions. Band atrophy leads to mRNFL and RGCL+ thinning, and INL thickening, and mRNFL and RGCL+ measurements are correlated strongly with VF loss. Segmented macular thickness measurements may be useful for quantifying neuronal loss in chiasmal compression.
机译:目的。我们使用频域光学相干断层扫描(fd-OCT)测量了黄斑内视网膜层的厚度,并将这些测量值与视交叉的压迫和视神经带萎缩(BA)引起的颞侧偏盲眼的视野(VF)相关联。方法。从33例颞侧偏盲患者的33眼和36例对照眼获得了黄斑fd-OCT扫描和VF。将黄斑区视网膜神经纤维层(mRNFL),视网膜神经节细胞和内丛状层(RGCL +)以及内核层(INL)分割。平均每个黄斑象限的测量值。定性评估扫描的INL中的微囊肿。通过中心16个测试点估算VF。比较两组。评估了VF和OCT测量之间的相关性。结果。 BA眼的mRNFL,RGCL +和总视网膜(TR)黄斑厚度测量值显着小于对照组。在鼻象限中,BA眼的INL测量值显着高于对照组。在颞象限中,mRNFL和RGCL +测量值具有比TR测量值更高的判别能力。发现大多数OCT参数与其对应的VF参数之间存在显着相关性。在相应区域,RNFL和RGCL +厚度以及VF损失之间观察到最强的关联。在患有BA的7只眼中发现了INL微囊肿,但在对照组中未发现。结论。带状萎缩导致mRNFL和RGCL +变薄,INL增厚,而mRNFL和RGCL +的测量值与VF丢失密切相关。分割的黄斑厚度测量值可能有助于量化手足压迫中的神经元丢失。

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