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建模与注视位置相关的眼震。

Modeling gaze position-dependent opsoclonus.

机构信息

Laboratory of Sensorimotor Research, NEI, NIH, DHHS, Bethesda, MD, United States.

NYU School of Medicine, New York, NY, United States.

出版信息

Prog Brain Res. 2019;249:35-61. doi: 10.1016/bs.pbr.2019.01.002. Epub 2019 Mar 2.

Abstract

Opsoclonus/flutter (O/F) is a rare disorder of the saccadic system. Previously, we modeled O/F that developed in a patient following abuse of anabolic steroids. That model, as in all models of the saccadic system, generates commands to make a change in eye position. Recently, we saw a patient who developed a unique form of opsoclonus following a concussion. The patient had postsaccadic ocular flutter in both directions of gaze, and opsoclonus during fixation and pursuit in the left hemifield. A new model of the saccadic system is needed to account for this gaze-position dependent O/F. We started with our prior model, which contains two key elements, mutual inhibition between inhibitory burst neurons on both sides and a prolonged reactivation time of the omnipause neurons (OPNs). We included new inputs to the OPNs from the nucleus prepositus hypoglossi and the frontal eye fields, which contain position-dependent neurons. This provides a mechanism for delaying OPN reactivation, and creating a gaze-position dependence. A simplified pursuit system was also added, the output of which inhibits the OPNs, providing a mechanism for gaze-dependence during pursuit. The rest of the model continues to generate a command to change eye position.

摘要

眼球震颤/摆动(O/F)是一种罕见的扫视系统疾病。之前,我们模拟了一位滥用合成代谢类固醇后出现 O/F 的患者。在所有扫视系统模型中,该模型都会生成改变眼球位置的指令。最近,我们观察到一位患者在脑震荡后出现了一种独特形式的眼球震颤。该患者在注视和追踪左侧时出现双向的继发性眼球震颤和摆动。需要一种新的扫视系统模型来解释这种依赖注视位置的 O/F。我们从之前的模型开始,该模型包含两个关键要素,即两侧抑制性爆发神经元之间的相互抑制和普遍暂停神经元(OPN)的延长再激活时间。我们为 OPN 增加了来自舌下前核和额眼区的新输入,这些区域包含位置相关神经元。这为延迟 OPN 再激活并产生注视位置依赖性提供了机制。还添加了简化的追踪系统,其输出抑制 OPN,为追踪期间的注视依赖性提供了机制。模型的其余部分继续生成改变眼球位置的指令。

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