Hirasawa Kazunori, Shoji Nobuyuki, Isono Karen, Tsuchiya Manami
Orthoptics and Visual Science, Department of Rehabilitation, School of Allied Health Sciences, Kitasato University, Kanagawa, Japan.
PLoS One. 2015 May 12;10(5):e0127159. doi: 10.1371/journal.pone.0127159. eCollection 2015.
To evaluate the effect of different levels of intraocular stray light on kinetic perimetry findings.
Twenty-five eyes of 25 healthy young participants were examined by automated kinetic perimetry (Octopus 900) using Goldmann stimuli III4e, I4e, I3e, I2e, and I1e. Each stimulus was presented with a velocity of 3°/s at 24 meridians with 15° intervals. Four levels of intraocular stray light were induced using non-white opacity filter (WOF) filters and WOFs applied to the clear plastic eye covers of the participants. The visual acuity, pupil diameter, isopter area, and kinetic sensitivity of each meridian were analyzed for each WOF density.
Visual acuity deteriorated with increasing WOF densities (p < 0.01). With a visual acuity of 0.1 LogMAR units, the isopter areas for III4e, I4e, I3e, I2e, and I1e decreased by -32.7 degree2 (-0.2%), -255.7 degree2 (-2.6%), -381.2 degree2 (-6.2%), -314.8 degree2 (-12.8%), and -59.2 degree2 (-15.2%), respectively; kinetic sensitivity for those stimuli decreased by -0.1 degree (-0.1%), -0.8 degree (-1.4%), -1.6 degree (-3.7%), -2.7 degree (-9.7%), and -1.7 degree (-16.2%), respectively. The pupil diameter with each WOF density was not significantly different.
Kinetic perimetry measurements with a high-intensity stimulus (i.e., III4e) were unaffected by intraocular stray light. In contrast, measurements with the I4e, I3e, I2e, and I1e stimuli, especially I2e and I1e, were affected. Changes in the shape of the isopter resulting from opacity must be monitored, especially in cases of smaller and lower-intensity stimuli.
评估不同水平的眼内杂散光对动态视野检查结果的影响。
使用Goldmann刺激III4e、I4e、I3e、I2e和I1e,通过自动动态视野计(Octopus 900)对25名健康年轻参与者的25只眼睛进行检查。每个刺激以3°/秒的速度在24条子午线上以15°间隔呈现。使用非白色不透明滤光片(WOF)滤光片并将其应用于参与者的透明塑料眼罩,诱导出四个水平的眼内杂散光。分析每个WOF密度下各子午线的视力、瞳孔直径、等视线面积和动态敏感度。
随着WOF密度增加,视力下降(p < 0.01)。视力为0.1 LogMAR单位时,III4e、I4e、I3e、I2e和I1e的等视线面积分别减少-32.7度²(-0.2%)、-255.7度²(-2.6%)、-381.2度²(-6.2%)、-314.8度²(-12.8%)和-59.2度²(-15.2%);这些刺激的动态敏感度分别降低-0.1度(-0.1%)、-0.8度(-1.4%)、-1.6度(-3.7%)、-2.7度(-9.7%)和-1.7度(-16.2%)。每个WOF密度下的瞳孔直径无显著差异。
高强度刺激(即III4e)的动态视野测量不受眼内杂散光影响。相比之下,I4e、I3e、I2e和I1e刺激的测量,尤其是I2e和I1e,受到影响。必须监测由不透明度导致的等视线形状变化,尤其是在较小和较低强度刺激的情况下。