Bharadwaj Shrikant R, Wang Jingyun, Candy T Rowan
Hyderabad Eye Research Foundation, Bausch and Lomb School of Optometry, L V Prasad Eye Institute, Hyderabad, Andhra Pradesh, India.
J Vis. 2011 Apr 11;11(4):6. doi: 10.1167/11.4.6.
Pupil responses of adults to near visual demands are well characterized but those of typically developing infants and children are not. This study determined the following pupil characteristics of infants, children and adults using a PowerRefractor (25 Hz): i) binocular and monocular responses to a cartoon movie that ramped between 80 and 33 cm (20 infants, 20 2-4-yr-olds and 20 adults participated) ii) binocular and monocular response threshold for 0.1 Hz sinusoidal stimuli of 0.25 D, 0.5 D or 0.75 D amplitude (33 infants and 8 adults participated) iii) steady-state stability of pupil responses at 80 cms (8 infants and 8 adults participated). The change in pupil diameter with viewing distance (Δpd) was significantly smaller in infants and 2-4-yr-olds than in adults (p < 0.001) and significantly smaller under monocular than binocular conditions (p<0.001). The 0.75 D sinusoidal stimulus elicited a significant binocular pupillary response in infants and a significant binocular and monocular pupillary response in adults. Steady-state pupillary fluctuations were similar in infants and adults (p = 0.25). The results suggest that the contribution of pupil size to changes in retinal image quality when tracking slow moving objects may be smaller during development than in adulthood. Smaller monocular Δpd reflects the importance of binocular cues in driving near-pupillary responses.
成年人对近视力需求的瞳孔反应已得到充分表征,但正常发育的婴儿和儿童的瞳孔反应却并非如此。本研究使用PowerRefractor(25赫兹)测定了婴儿、儿童和成人的以下瞳孔特征:i)对在80至33厘米之间渐变的卡通电影的双眼和单眼反应(20名婴儿、20名2至4岁儿童和20名成人参与);ii)0.25 D、0.5 D或0.75 D振幅的0.1赫兹正弦刺激的双眼和单眼反应阈值(33名婴儿和8名成人参与);iii)80厘米处瞳孔反应的稳态稳定性(8名婴儿和8名成人参与)。婴儿和2至4岁儿童的瞳孔直径随观察距离的变化(Δpd)明显小于成人(p < 0.001),且单眼条件下的变化明显小于双眼条件(p<0.001)。0.75 D的正弦刺激在婴儿中引起显著的双眼瞳孔反应,在成人中引起显著的双眼和单眼瞳孔反应。婴儿和成人的稳态瞳孔波动相似(p = 0.25)。结果表明,在发育过程中,跟踪缓慢移动物体时瞳孔大小对视网膜图像质量变化的贡献可能比成年期小。较小的单眼Δpd反映了双眼线索在驱动近瞳孔反应中的重要性。