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An enhancement module to improve the atypical birefringence pattern using scanning laser polarimetry with variable corneal compensation.

机译:一种增强模块,使用具有可变角膜补偿功能的扫描激光偏振仪改善非典型双折射图案。

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AIM: To examine the repeatability and effect of an enhancement module on the severity of atypical birefringence patterns (ABP) using scanning laser polarimetery (SLP) with variable corneal compensation (VCC). METHODS: 16 patients with perimetric glaucoma (PG), 24 glaucoma suspect and pre-perimetric glaucoma (GSPPG), and 12 normal volunteers (N) were included. One randomly selected eye of each volunteer was scanned three times using VCC and enhanced corneal compensation (ECC) at the same session by the same examiner. Typical scan scores (TSS) were calculated to evaluate the ABP. Coefficients of variability (CoV), coefficients of repeatability (CoR), and intraclass correlation coefficients (ICC) were calculated. RESULTS: The mean TSS using ECC (n = 97.3 (5.5), GSPPG = 98.3 (3.5), PG = 99.2 (2.3)) was significantly higher (p = 0.02, 0.01, and 0.006, respectively) compared with VCC (86.5 (14.4), 88.2 (18.2), and 83.4 (2.2), respectively). VCC parameters had a CoR of 1.2-6.5, CoV of 1.9%-8.6%, and ICC of 0.8-0.9. ECC parameters had a CoR of 0.5-4.0, CoV of 0.3%-5.1%, and ICC of 0.2-0.9. TSNIT average was the overall best performing parameter with the highest repeatability and least variability using both techniques (CoR<2.1, CoV<2%). CONCLUSION: The enhancement module significantly reduced the severity of ABP and maintained a high level of repeatability of retardation measurements.
机译:目的:使用带有可变角膜补偿(VCC)的扫描激光偏振仪(SLP),检查增强模块对非典型双折射图案(ABP)严重程度的可重复性和影响。方法:包括16例视野性青光眼(PG)患者,24例可疑青光眼和术前青光眼(GSPPG)患者以及12例正常志愿者(N)。每位志愿者的一只随机选择的眼睛在同一疗程中由同一位检查员使用VCC和增强的角膜补偿(ECC)进行了3次扫描。计算典型扫描得分(TSS)以评估ABP。计算变异系数(CoV),重复系数(CoR)和组内相关系数(ICC)。结果:与VCC(86.5((5)(9)(5.5),GSPPG = 98.3(3.5),PG = 99.2(2.3))相比,平均TSS显着更高(分别为p = 0.02、0.01和0.006)。 14.4),88.2(18.2)和83.4(2.2)。 VCC参数的CoR为1.2-6.5,CoV为1.9%-8.6%,ICC为0.8-0.9。 ECC参数的CoR为0.5-4.0,CoV为0.3%-5.1%,ICC为0.2-0.9。使用两种技术,TSNIT平均值是总体表现最佳的参数,具有最高的重复性和最小的可变性(CoR <2.1,CoV <2%)。结论:增强模块显着降低了ABP的严重程度,并保持了延迟测量的高重复性。

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