Chung S T, Bedell H E
College of Optometry, University of Houston, TX 77204-6052, USA.
Exp Brain Res. 1995;107(2):306-14. doi: 10.1007/BF00230050.
Rebound nystagmus (RN) is an involuntary movement of the eyes, characterized by slow-phase eye velocity in the direction of previously maintained eccentric gaze. The purpose of this study was to clarify the neural or neuromuscular events that are responsible for the generation of RN. To do so, we examined whether a briefly presented visual stimulus during RN reduces (i.e., "dumps") subsequent eye velocity, compared with the velocity of slow-phase eye movements when no visual stimulus was presented. For comparison, "dumping" was examined also for optokinetic afternystagmus (OKAN), which is generally believed to result from eye-velocity signals stored in a central neural integrator as a consequence of optokinetic stimulation. Results obtained from ten normal observers showed that RN and OKAN both exhibit "dumping": average slow-phase eye velocities were reliably slower after fixation of a 0.6 deg stationary target than on trials when no fixation target was presented. Although RN decayed faster than OKAN in darkness, the magnitude of "dumping" increased similarly with the duration of the visual stimulus (25 ms to 4 s) for both types of eye movement. The results imply that signals from a central velocity-storage mechanism contribute to the generation of RN.
回跳性眼球震颤(RN)是一种眼球的不自主运动,其特征为眼球慢相速度朝向先前维持的偏心注视方向。本研究的目的是阐明导致RN产生的神经或神经肌肉事件。为此,我们研究了在RN期间短暂呈现的视觉刺激与未呈现视觉刺激时慢相眼球运动速度相比,是否会降低(即“倾倒”)随后的眼球速度。作为比较,还对视动性眼震后眼震(OKAN)进行了“倾倒”检查,一般认为OKAN是由于视动刺激后存储在中枢神经整合器中的眼球速度信号所致。从10名正常观察者获得的结果表明,RN和OKAN均表现出“倾倒”:在固定一个0.6度的静止目标后,平均慢相眼球速度比未呈现固定目标的试验可靠地更慢。尽管在黑暗中RN比OKAN衰减得更快,但对于这两种眼球运动类型,“倾倒”的幅度均随视觉刺激持续时间(25毫秒至4秒)的增加而类似地增加。结果表明,来自中枢速度存储机制的信号有助于RN的产生。