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首页> 外文期刊>Investigative ophthalmology & visual science >Relationship between retinal nerve fiber layer and visual field sensitivity as measured by optical coherence tomography in chiasmal compression.
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Relationship between retinal nerve fiber layer and visual field sensitivity as measured by optical coherence tomography in chiasmal compression.

机译:视网膜神经纤维层与视野敏感性之间的关系,通过光学相干层析成像技术测定其在as骨压迫中的关系。

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摘要

PURPOSE: To investigate the spatial relationship between retinal nerve fiber layer (RNFL) thickness measured with optical coherence tomography (OCT) and visual field sensitivity (VFS) measured by standard automated perimetry (SAP) in chiasmal compression. METHODS: Twenty-six patients with chiasmal compression were enrolled. RNFL thickness was measured with the StratusOCT and VFS with SAP (Humphrey Field Analyzer; both from Carl Zeiss Meditec, Dublin, CA). Relationships between RNFL thickness (in clock hours, hemifields, and sectors) and VFS (zones were divided into hemifields, quadrants, and sectors based on a validated visual field map) expressed in a decibel scale and 1/lambert (L) were evaluated by linear and nonlinear regression. Coefficients of determination (R(2)) were calculated by using a multivariate model. RESULTS: Average RNFL thickness correlated strongly with pattern standard deviation (PSD; R = 0.622) and mean deviation (MD; R = 0.413). The four strongest correlations were between the 8 o'clock OCT position (temporal disc), with the temporal hemifield (R = -0.813), the superotemporal quadrant (R = -0.847), the inferotemporal quadrant (R = -0.855), and the field sector representing the papillomacular bundle (R = -0.809). Coefficients of determination improved significantly in all sectors when time since surgery was included in the regression model-most notably, average thickness and 1/L (R(2) = 0.35-0.49), the decibels (R(2) = 0.31-0.47), and the temporal sector (R(2) 0.44-0.57). CONCLUSIONS: This is the first study to compare the structure-function correlation of RNFL measured by OCT with SAP in patients with chiasmal compression. RNFL is topographically related globally and sectorally to decreased SAP, with the temporal sectors showing the strongest correlations. The correlation between RNFL and VFS strengthens as the time from surgical intervention increases.
机译:目的:探讨光学相干断层扫描(OCT)测量的视网膜神经纤维层(RNFL)厚度与标准自动视野检查(SAP)在as骨压迫中测量的视野敏感性(VFS)之间的空间关系。方法:纳入26例手足压迫症患者。 RNFL厚度是通过StratusOCT和VFS和SAP(汉弗莱现场分析仪;均来自加利福尼亚都柏林的卡尔·蔡司·梅迪泰克公司)测量的。 RNFL厚度(以时钟小时,半场和扇区为单位)和VFS(根据有效视野图将区域分为半场,象限和扇区)之间的关系以分贝标度表示,1 / L(L)通过线性和非线性回归。通过使用多变量模型计算确定系数(R(2))。结果:平均RNFL厚度与图案标准偏差(PSD; R = 0.622)和平均偏差(MD; R = 0.413)密切相关。四个最强的相关性是在8点OCT位置(颞椎间盘),颞半球(R = -0.813),颞上象限(R = -0.847),颞下象限(R = -0.855)和代表乳头状肌束的野外区域(R = -0.809)。自回归模型中包括手术以来的时间后,所有部门的测定系数均显着提高-最显着的是平均厚度和1 / L(R(2)= 0.35-0.49),分贝(R(2)= 0.31-0.47 )和时域(R(2)0.44-0.57)。结论:这是第一项比较OCT和SAP测量的正向压迫患者RNFL的结构-功能相关性的研究。 RNFL在全球和部门上与SAP减少的地形相关,而时空部门显示出最强的相关性。 RNFL与VFS之间的相关性随着手术干预时间的增加而增强。

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