Strouthidis N G, White E T, Owen V M F, Ho T A, Hammond C J, Garway-Heath D F
Glaucoma Research Unit, Moorfields Eye Hospital, 162 City Road, London EC1V 2PD, UK.
Br J Ophthalmol. 2005 Nov;89(11):1427-32. doi: 10.1136/bjo.2005.067298.
To evaluate the test-retest variability of stereometric parameter measurements made with the Heidelberg retina tomograph (HRT) and Heidelberg retina tomograph-II (HRT-II), and to establish which parameter(s) provided the most repeatable and reliable measurements with both devices. An investigation into the factors affecting the repeatability of the measurements of this parameter(s) was conducted.
43 ocular hypertensive and 31 glaucoma subjects were recruited to a test-retest study. One eye from each subject underwent HRT and HRT-II imaging by two observers on each of two occasions within 6 weeks of each other. Lens grading was carried out by LOCS III grading and Scheimpflug camera generated densitogram analysis.
Rim area (RA) and mean cup depth measurements were found to be least variable. Both inter-test reference height difference and image quality had a strong relation (R(2)>0.5, p<0.0001) with inter-test RA difference and, together, are responsible for 70% of RA measurement variability. Image quality was influenced by lens opacity, cylindrical error, and age. Inter-test RA measurement differences were unrelated to the observer or visit interval.
RA represents an appropriate measure for monitoring glaucomatous progression. Reference height difference and image quality were the factors that most influenced RA measurement variability. Image analysis strategies that address these factors may reduce test-retest variability.
评估使用海德堡视网膜断层扫描仪(HRT)和海德堡视网膜断层扫描仪II(HRT-II)进行的立体测量参数测量的重测变异性,并确定哪些参数在这两种设备上提供了最可重复和可靠的测量结果。对影响该参数测量重复性的因素进行了调查。
招募了43名高眼压症患者和31名青光眼患者进行重测研究。在彼此6周内的两个不同时间,两名观察者对每个受试者的一只眼睛进行了HRT和HRT-II成像。通过LOCS III分级和Scheimpflug相机生成的密度图分析进行晶状体分级。
发现边缘面积(RA)和平均杯深测量的变异性最小。测试间参考高度差和图像质量与测试间RA差异均有很强的相关性(R²>0.5,p<0.0001),并且共同导致了70%的RA测量变异性。图像质量受晶状体混浊、柱面误差和年龄的影响。测试间RA测量差异与观察者或检查间隔无关。
RA是监测青光眼进展的合适指标。参考高度差和图像质量是影响RA测量变异性的主要因素。解决这些因素的图像分析策略可能会降低重测变异性。