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Use of preoperative assessment of positionally induced cyclotorsion: a video-oculographic study.

机译:术前评估位置诱发性旋扭的用途:一项视频眼图研究。

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摘要

PURPOSE: Positionally induced cyclotorsion could be an important factor concerning correction of astigmatism in refractive surgery. The method of binocular three dimensional infrared video-oculography (3D-VOG) was used to determine a possible influence of body position on cyclotorsion. METHODS: 38 eyes (19 healthy subjects, median value of age 25.5) with normal binocular vision were examined using 3D-VOG. This method records ocular motions and positions of both eyes simultaneously in the x, y, and z axis. Cycloposition of the eyes was recorded first in a seated position (both eyes open, test 1), then in a supine position (right eye closed, test 2), occlusion of both eyes (test 3), both eyes open (test 4). Cyclovergence was calculated as the difference between the right and the left eye positions. RESULTS: The range of cyclotorsion of the right and left eye in all four tests was between 1.13 degrees excyclotorsion and 0.34 degrees incyclotorsion. There was no statistically significant difference of the median values for torsion for the four test situations. Concerning the influence of body position on cyclotorsion, a statistically significant difference between the different test positions and settings did not exist. Median values for right/left torsion/cyclovergence were: 0.17/0.04/0.02 (test 1), -0.31/-0.71/-0.16 (test 2), -1.09/-0.60/0.82 (test 3), 0.28/0.28/-0.82 (test 4). CONCLUSIONS: Cyclotorsion does not significantly change between seated and supine position in subjects with normal binocular vision and stable fixation. In these subjects, an erroneous refractive surgery due to incorrect measurement of the axis of astigmatism in the seated position and performing the refractive surgery in the supine position, is very unlikely.
机译:目的:位置诱发的旋扭可能是矫正屈光手术中散光的重要因素。使用双目三维红外视频眼动术(3D-VOG)的方法来确定身体位置对环扭的可能影响。方法:使用3D-VOG检查双眼视力正常的38只眼睛(19名健康受试者,中位年龄为25.5岁)。此方法同时记录x,y和z轴的眼动和两只眼睛的位置。首先在坐姿(双眼张开,测试1)中记录眼环位置,然后在仰卧位(右眼闭上,测试2),闭塞双眼(测试3),双眼张开(测试4)。 。计算出环过盈度为右眼和左眼位置之间的差异。结果:在所有四个测试中,右眼和左眼的旋扭范围在1.13度外旋和0.34度内旋之间。在四种测试情况下,扭转中位值没有统计学上的显着差异。关于体位对旋扭的影响,不同的测试位置和设置之间不存在统计学上的显着差异。右/左扭转/环过盈的中位数值为:0.17 / 0.04 / 0.02(测试1),-0.31 / -0.71 / -0.16(测试2),-1.09 / -0.60 / 0.82(测试3),0.28 / 0.28 / -0.82(测试4)。结论:双眼视力正常且固定稳定的受试者在坐姿和仰卧位之间的回旋力没有明显改变。在这些受试者中,极不可能发生由于在坐姿下正确测量散光轴而在仰卧位上进行屈光手术而导致的错误屈光手术。

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