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Invest Ophthalmol Vis Sci. 2020 May 11;61(5):45. doi: 10.1167/iovs.61.5.45.
In many individuals with pattern strabismus, the vertical misalignment varies with horizontal eye position. It has been proposed that these cross-axis effects result from abnormal cross-talk between brainstem structures that would normally encode horizontal and vertical eye position and velocity. The nucleus prepositus hypoglossi (NPH) is an ideal structure to test this overarching hypothesis. Neurons in the NPH are believed to mathematically integrate eye velocity signals to generate a tonic signal related to horizontal eye position. We hypothesized that, in monkeys with A-pattern exotropia and vertical inconcomitance, these neurons would show an abnormally large sensitivity to vertical eye position.
Three rhesus monkeys (1 normal and 2 with A-pattern exotropia) were trained to maintain fixation on a visual target as it stepped to various locations on a tangent screen. Extracellular neural activity was recorded from neurons in the NPH. Each neuron's sensitivity to horizontal and vertical eye position was estimated using multiple linear regression and preferred directions computed for each eye.
Unexpectedly, the mean preferred directions for the left eye were normal in the monkeys with A-pattern exotropia. For the right eye, there was a clear upward deviation for the right NPH and a downward deviation for the left NPH. In addition, the R2 values were significantly lower for model fits for neurons recorded from the exotropic monkeys.
We suggest that vertical inconcomitance results from inappropriate vertical-to-horizontal cross-talk that affects the two eyes differently.
在许多具有模式斜视的个体中,垂直斜视度随水平眼位而变化。有人提出,这些交叉轴效应是由于脑干结构之间异常的串扰引起的,这些结构通常编码水平和垂直眼位和速度。舌下神经前置核(NPH)是测试这一总体假设的理想结构。据信,NPH 中的神经元会对眼速度信号进行数学积分,以产生与水平眼位相关的紧张信号。我们假设,在 A 型外斜视和垂直失同步的猴子中,这些神经元对垂直眼位的敏感性会异常增大。
三只恒河猴(1 只正常,2 只 A 型外斜视)被训练保持对视觉目标的注视,当目标在切线屏幕上移动到不同位置时。从 NPH 中的神经元记录细胞外神经活动。使用多元线性回归估计每个神经元对水平和垂直眼位的敏感性,并计算每只眼的最佳方向。
出乎意料的是,A 型外斜视猴子的左眼平均最佳方向正常。对于右眼,右 NPH 有明显的向上偏差,左 NPH 有向下偏差。此外,外斜视猴记录的神经元模型拟合的 R2 值明显较低。
我们认为,垂直失同步是由于垂直到水平的不适当串扰影响了两只眼睛,导致了这种情况。