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Effects of scan circle displacement in optical coherence tomography retinal nerve fibre layer thickness measurement: A RNFL modelling study

机译:扫描圆位移对光学相干断层扫描视网膜神经纤维层厚度测量的影响:RNFL建模研究

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摘要

Objective: To study the effect of optical coherence tomography (OCT) scan circle displacement on retinal nerve fibre layer (RNFL) measurement errors using cubic spline models.MethodsForty-nine normal subjects were included in the analysis. In one randomly selected eye in each subject, RNFL thickness around the optic disc was measured by taking 16 circular scans of different sizes (scan radius ranged from 1 to 2.5 mm). The RNFL profile in each eye was constructed with a mathematical model using a smoothing spline approximation. Scan circle (diameter 3.4 mm) RNFL measurements (total average, superior, nasal, inferior, and temporal RNFL thicknesses) obtained from eight directions (superior, superonasal, nasal, inferonasal, inferior, inferotemporal, temporal, and superotemporal) displaced at different distances (0.1, 0.2, 0.3, 0.4, 0.5, 0.6, and 0.7 mm) from the disc centre were then computed by a computer program and compared to the reference standard where the scan circle is centred at the optic disc. RNFL measurement error was calculated as the absolute of (RNFL thickness (displaced) - RNFL thickness (reference standard)).ResultsThe respective mean average, superior, nasal, inferior, and temporal RNFL measurement errors were 2.32.0, 4.94.5, 4.13.8, 6.27.6, and 3.83.5 m upon 0.1 mm scan circle displacement, and 12.111.4, 27.818.4, 21.718.6, 34.822.9, and 15.210.7 m upon 0.7 mm scan circle displacement. Significant differences of average and quadrant RNFL thicknesses were evident between centred and displaced scan circle measurements (all with P0.001). RNFL measurement error increased in a monotonic fashion with increasing distance away from the disc and the change was direction-dependent.ConclusionsRNFL measurement error varies with the direction and distance of scan displacement. The superior and the inferior RNFL measurements are most vulnerable to scan displacement errors, whereas the average RNFL thickness is the least susceptible. Obtaining a well-centred scan is essential for reliable RNFL measurement in OCT. © 2009 Macmillan Publishers Limited All rights reserved.
机译:目的:利用三次样条模型研究光学相干断层扫描(OCT)扫描圆位移对视网膜神经纤维层(RNFL)测量误差的影响。方法包括49名正常受试者。在每位受试者的一只随机选择的眼睛中,通过进行16次不同大小的圆形扫描(扫描半径范围为1到2.5 mm)来测量视盘周围的RNFL厚度。使用平滑样条曲线近似,使用数学模型构建每只眼睛的RNFL轮廓。从八个方向(上,上鼻,鼻,鼻,下鼻,下,颞下,颞和颞上)获得的扫描圈(直径3.4毫米)RNFL测量值(总平均,上,鼻,下和颞RNFL厚度)然后,通过计算机程序计算出距光盘中心的距离(0.1、0.2、0.3、0.4、0.5、0.6和0.7毫米),并将其与参考圆盘在光盘上居中的参考标准进行比较。 RNFL测量误差计算为(RNFL厚度(位移)-RNFL厚度(参考标准))的绝对值。结果RNFL的平均平均值,上,鼻,下和时间的平均误差分别为2.32.0、4.94.5、4.13扫描圆位移0.1 mm时分别为0.8、6.27.6和3.83.5 m,扫描圆位移0.7 mm时为12.111.4、27.818.4、21.718.6、34.822.9和15.210.7 m。在居中和位移扫描圆测量之间,平均和象限RNFL厚度存在显着差异(均P0.001)。 RNFL测量误差随着与光盘的距离增加而单调增加,并且变化取决于方向。结论RNFL测量误差随扫描位移的方向和距离而变化。上,下RNFL测量最容易受到扫描位移误差的影响,而RNFL的平均厚度最不容易受到影响。对于OCT中可靠的RNFL测量,获得良好的中心扫描至关重要。 ©2009 Macmillan Publishers Limited版权所有。

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