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Three-Dimensional Evaluation of Posterior Pole and Optic Nerve Head in Myopes with Glaucoma

机译:青光眼近视眼后极和视神经头的三维评估

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The degree of myopia is represented by a global index, such as refractive error or axial length. However, the progression of myopia mainly develops in the posterior eyeball. Therefore, it is reasonable to assume that the evaluation of myopia should be confined to the posterior segment, where most of the growth and lengthening occurs. Swept source optical coherence tomography software can reconstruct the scans to the coronal view of the posterior pole, which provides additional anterior-posterior depth (z axis in the Cartesian coordinates) that is not provided with the common fundus photograph. We deduced that the parameter of deepest point of the eyeball (DPE) as a surrogate for posterior pole configuration. Between myopes with and without normal tension glaucoma (NTG) with similar axial length, myopes with NTG had deeper and more distant location of the DPE from the optic disc. The difference of the DPE position between the myopes with and without NTG may have implications for the larger optic disc tilt and torsion characteristic of myopes with NTG. Furthermore, these data suggest that myopes with NTG go through excessive posterior scleral remodeling, which may result in vulnerable optic nerve head.
机译:近视度数由整体指数表示,例如屈光不正或眼轴长度。但是,近视的发展主要发生在眼后球。因此,可以合理地认为,对近视的评估应仅限于后段,在该段后段大部分会发生增长和延长。扫频光源光学相干断层扫描软件可以将扫描重建到后极的冠状视图,从而提供普通眼底照片未提供的其他前后深度(笛卡尔坐标中的z轴)。我们推断出眼球最深点(DPE)的参数可以作为后极构造的替代指标。在有和没有正常眼轴性青光眼(NTG)且具有相似轴向长度的近视眼之间,具有NTG的近视眼中DPE与视盘的位置更深,更远。有和没有NTG的近视眼之间DPE位置的差异可能对具有NTG的近视眼的较大的光盘倾斜度和扭转特性有影响。此外,这些数据表明,NTG近视眼会经历过度的后巩膜重塑,这可能会导致视神经头脆弱。

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