Satgunam PremNandhini, Datta Sourav, Chillakala Koteswararao, Bobbili Karthik R, Joshi Dhruv
Brien Holden Institute of Optometry and Vision Science, Hyderabad Eye Research Foundation, L V Prasad Eye Institute, Banjara Hills, Hyderabad, India.
Srujana - Center for Innovation, Hyderabad Eye Research Foundation, L V Prasad Eye Institute, Banjara Hills, Hyderabad, India.
Transl Vis Sci Technol. 2017 Jul 3;6(4):3. doi: 10.1167/tvst.6.4.3. eCollection 2017 Jul.
There are no commercially available devices to measure visual fields in infants. We developed a device, "Pediatric Perimeter," that quantifies visual field extent (VFE) for infants. We describe the construction, validation, and use of this device.
A hemispherical dome with light emitting diodes (LEDs) was constructed. The LEDs were controlled using a computer program to measure reaction time (RT) to gross visual fields (GVF) and the VFE. Participants were tested in supine position in a dark room. Eye or head movement towards the stimuli was monitored with an infrared (IR) camera. Validation was done on 10 adults (mean age: 24.4 ± 5 years) with tunnel vision simulator.
Perimetry was performed on 19 infants (age: 2.3-12 months), five infants with normal milestones. GVF and VFE were estimated in 17 and 7 infants, respectively. Median RT of infants with developmental delay was 663 ms and 380 ms for healthy infants. Also, 14 children (age: 14 months-6 years) with developmental delay and five patients with cognitive impairment were tested.
Visual field isopter and RT can be examined with the Pediatric Perimeter device on infants and patients with special needs. Further testing on infants will need to assess the repeatability. A large-scale study will be needed to compare typically developing infants and infants with delayed milestones with this device.
Quantifiable parameters obtained with this device can be used as outcome measures in clinical examination of infants and patients with special needs. This device can be used in pediatric, neurology, and ophthalmology clinics.
目前尚无用于测量婴儿视野的商用设备。我们开发了一种名为“儿科视野计”的设备,用于量化婴儿的视野范围(VFE)。我们描述了该设备的构造、验证和使用方法。
构建了一个带有发光二极管(LED)的半球形圆顶。使用计算机程序控制LED,以测量对总视野(GVF)和VFE的反应时间(RT)。参与者在暗室中仰卧位接受测试。用红外(IR)摄像机监测眼睛或头部向刺激物的移动。在10名患有管状视野模拟器的成年人(平均年龄:24.4±5岁)身上进行了验证。
对19名婴儿(年龄:2.3 - 12个月)进行了视野检查,其中5名婴儿发育里程碑正常。分别在17名和7名婴儿中估计了GVF和VFE。发育迟缓婴儿的中位RT为663毫秒,健康婴儿为380毫秒。此外,还对14名发育迟缓儿童(年龄:14个月 - 6岁)和5名认知障碍患者进行了测试。
可以使用儿科视野计设备对婴儿和有特殊需求的患者进行视野等视线和RT检查。对婴儿的进一步测试需要评估重复性。需要进行大规模研究,以使用该设备比较发育正常的婴儿和发育里程碑延迟的婴儿。
使用该设备获得的可量化参数可作为婴儿和有特殊需求患者临床检查的结果指标。该设备可用于儿科、神经科和眼科诊所。