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A smartphone ocular alignment measurement app in school screening for strabismus

机译:智能手机眼睛对齐测量应用在学校筛选中斜视

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Strabismus is the leading risk factor for amblyopia, which should be early detected for minimized visual impairment. However, traditional school screening for strabismus can be challenged due to several factors, most notably training, mobility and cost. The purpose of our study is to evaluate the feasibility of using a smartphone application in school vision screening for detection of strabismus. The beta smartphone application, EyeTurn, can measure ocular misalignment by computerized Hirschberg test. The application was used by a school nurse in a routine vision screening for 133 elementary school children. All app measurements were reviewed by an ophthalmologist to assess the rate of successful measurement and were flagged for in-person verification with prism alternating cover test (PACT) using a 2.4Δ threshold (root mean squared error of the app). A receiver operating characteristic (ROC) curve was used to determine the best sensitivity and specificity for an 8Δ threshold (recommended by AAPOS) with the PACT measurement as ground truth. The nurse obtained at least one successful app measurement for 93% of children (125/133). 40 were flagged for PACT, of which 6 were confirmed to have strabismus, including 4 exotropia (10△, 10△, 14△ and 18△), 1 constant esotropia (25△) and 1 accommodative esotropia (14△). Based on the ROC curve, the optimum threshold for the app to detect strabismus was determined to be 3.0△, with the best sensitivity (83.0%), specificity (76.5%). With this threshold the app would have missed one child with accommodative esotriopia, whereas conventional screening missed 3 cases of intermittent extropia. Results support feasibility of use of the app by personnel without professional training in routine school screenings to improve detection of strabismus.
机译:Strabismus是弱视的主要风险因素,应该早期检测到最小化的视力障碍。然而,由于几个因素,最符合的培训,移动性和成本,传统学校筛查可能会受到挑战。我们研究的目的是评估在学校视觉筛选中使用智能手机应用的可行性,以检测Strabismus。 Beta智能手机应用程序,Eyeeturn,可以通过计算机化的Hirschberg测试来测量眼部未对准。该申请由学校护士用于133名小学儿童的常见视野筛选。眼科医生审查了所有应用程序测量,以评估成功测量速度,并使用2.4Δ阈值(应用程序的根均方误差)与棱镜交替覆盖测试(PAT)标记为人员验证。接收器操作特性(ROC)曲线用于确定8Δ阈值(AAPOS推荐)的最佳灵敏度和特异性,与PATT测量为基事实。护士为93%的儿童(125/133)获得了至少一个成功的应用程序测量。 40被标记为PATCT,其中6例被证实具有斜视,包括4个外触发(10‰,10‰,14‰,18‰),1个恒定的辅斜视(25‰)和1个容纳的宇宙(14‰)。基于ROC曲线,检测斜视的应用的最佳阈值被确定为3.0‰,最佳敏感性(83.0%),特异性(76.5%)。通过此阈值,该应用程序将错过一个具有型宇宙的一个孩子,而常规筛查错过了3例间歇性潜水。结果支持在常规学校筛查中没有专业培训的人员使用应用程序的可行性,以改善斜视的检测。

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