Kim Soo Chan, Nam Ki Chang, Lee Won Sang, Kim Deok Won
Graduate School of Bio & Information Technology, Hankyong National University, Ansung, South Korea.
Med Eng Phys. 2006 Jan;28(1):82-9. doi: 10.1016/j.medengphy.2005.04.002. Epub 2005 Jun 15.
Videooculography (VOG) is an eye movement measurement method used in the objective evaluation of vestibulo-ocular reflexes (VOR). An important requirement of VOG is to accurately estimate pupil center and ocular torsion, irrespective of drooping eyelids, eyelashes, corneal reflection, and blinking. Finding the accurate center of the pupil is particularly important in three-dimensional VOG, since otherwise, significant errors can occur in measuring torsional eye movement. A fast algorithm was proposed to accurately ascertain the pupil center, in spite of the complicating factors mentioned above. In this study, real-time three-dimensional VOG, which can measure horizontal, vertical, and torsional eye movements and calculate the pupil radius, was implemented using the proposed method. When the pupil radius was determined, the vertical position was measured within an error margin of less than 3%, even though only 10% of the pupil was visible. The time required to measure both three-dimensional eye movements and the pupil radius was less than 16 ms. Thus, eye movements can be measured in real-time. The resolutions of horizontal, vertical, and torsional eye movement were 0.2 degrees, 0.2 degrees, and 0.1 degrees, respectively, with maximum ranges of +/- 35 degrees, +/- 25 degrees, and +/- 18 degrees.
视频眼震图(VOG)是一种用于客观评估前庭眼反射(VOR)的眼动测量方法。VOG的一个重要要求是无论眼睑下垂、睫毛、角膜反射和眨眼情况如何,都要准确估计瞳孔中心和眼球扭转。在三维VOG中找到准确的瞳孔中心尤为重要,因为否则在测量眼球扭转运动时会出现重大误差。尽管存在上述复杂因素,仍提出了一种快速算法来准确确定瞳孔中心。在本研究中,使用所提出的方法实现了实时三维VOG,它可以测量水平、垂直和眼球扭转运动并计算瞳孔半径。当确定瞳孔半径时,即使只有10%的瞳孔可见,垂直位置的测量误差也在3%以内。测量三维眼动和瞳孔半径所需的时间不到16毫秒。因此,可以实时测量眼动。水平、垂直和眼球扭转运动的分辨率分别为0.2度、0.2度和0.1度,最大范围分别为+/- 35度、+/- 25度和+/- 18度。