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Comparison between Tendency-Oriented Perimetry (TOP) and octopus threshold perimetry.

机译:倾向性视野视野法(TOP)与章鱼阈阈视野法之间的比较。

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OBJECTIVE: To compare the results obtained by a new ultra-short automated perimetry test known as Tendency-Oriented Perimetry (TOP), which is an algorithm based on estimation of thresholds from information gathered from adjacent points with those obtained by a standard bracketing approach. TOP is designed to save up to 1/5 of the time taken by standard strategy by presenting each stimulus once on each location (instead of 4 to 6 times per location with the standard technique) and reaching a final threshold estimate by gathering information from responses to adjacent locations. DESIGN: Prospective, multicenter, observational comparative case series. PARTICIPANTS/METHODS: Four academic institutions provided data from testing 57 subjects, 15 with a normal ocular exam and 42 with a variety of visual field abnormalities. A total of 228 visual fields were analyzed. Two examinations of standard thresholding testing (Octopus program 32) and two examinations of the TOP program were obtained in each subject the same day. MAIN OUTCOME MEASURES: Comparison of global indices such as mean deviation (MD), square root of loss of variance (sLV), topographical defects, point by point differences, reproducibility, sensitivity/specificity, and time required to complete the test. RESULTS: Correlation coefficient of global indices between both tests was high, with mean deviation of r = 0.97 (SE[YX] +/- 1.65 decibels) and square root of loss variance of r = 0.93 (SE[YX] +/- 1.10 dB). Mean sensitivity tended to be 1 dB higher while MD tended to be 1 dB lower with TOP strategy. Reproducibility was equally good between both tests for threshold determination as well as for all global indices (MS, MD per quadrant, and LV). Cluster criteria for abnormality demonstrated TOP versus 32: sensitivity of 89/87; specificity of 90/77; positive predictive value of 96/91; negative predictive value of 75/68; and accuracy of 89/84. Mean time taken by this beta version of TOP was 4.05 minutes standard deviation +/- 0.55 versus the standard 32 version taking 14.65 minutes standard deviation +/- 3.75. CONCLUSIONS: TOP was four times faster than the traditional full-threshold technique and was successful in detecting visual field abnormalities. Defects with TOP tended to be smaller, shallower, and with softer edges than with standard approach. TOP could prove an alternative to traditional perimetric techniques.
机译:目的:比较一种新的超短自动视野检查法(趋势倾向视野检查法,TOP)获得的结果,该测试方法是基于根据从相邻点收集的信息中的阈值估计与通过标准包围方法获得的阈值进行估算的算法。 TOP旨在通过在每个位置展示一次刺激(而不是使用标准技术在每个位置展示4到6次),并通过从响应中收集信息来达到最终阈值估计,从而节省多达1/5的标准策略时间到相邻位置。设计:前瞻性,多中心,观察性比较案例系列。参与者/方法:四个学术机构提供了来自测试57位受试者的数据,其中15位接受了正常眼部检查,42位患有各种视野异常。总共分析了228个视野。同一天在每个受试者中进行了两次标准阈值测试(八达通程序32)检查和两次TOP程序检查。主要观察指标:整体指数的比较,例如平均偏差(MD),方差损失的平方根(sLV),地形缺陷,逐点差异,可重复性,灵敏度/特异性和完成测试所需的时间。结果:两项测试之间的整体指数相关系数很高,r = 0.97(SE [YX] +/- 1.65分贝)的平均偏差和r = 0.93(SE [YX] +/- 1.10的损失方差的平方根) D b)。使用TOP策略时,平均灵敏度趋向于高1 dB,而MD趋向于低1 dB。两次测试的阈值确定以及所有全局指标(MS,每个象限的MD和LV)之间的重现性都很好。异常的聚类标准显示TOP与32:灵敏度为89/87; 90/77的特异性;阳性预测值为96/91;阴性预测值为75/68;和89/84的准确性。此版本的TOP的平均时间为4.05分钟标准偏差+/- 0.55,而标准32版本的平均时间为14.65分钟标准偏差+/- 3.75。结论:TOP比传统的全阈值技术快四倍,并且能够成功检测到视野异常。与标准方法相比,TOP的缺陷往往更小,更浅且边缘更软。 TOP可以证明是传统视野测量技术的替代方法。

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