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人类耳石-眼反射的可塑性。

Plasticity of the human otolith-ocular reflex.

作者信息

Wall C, Smith T R, Furman J M

机构信息

Department of Otology and Laryngology, Harvard Medical School, Boston, MA.

出版信息

Acta Otolaryngol. 1992;112(3):413-20. doi: 10.3109/00016489209137421.

Abstract

The eye movement response to earth vertical axis rotation in the dark, a semicircular canal stimulus, can be altered by prior exposure to combined visual-vestibular stimuli. Such plasticity of the vestibulo-ocular reflex has not been described for earth horizontal axis rotation, a dynamic otolith stimulus. Twenty normal human subjects underwent one of two types of adaptation paradigms designed either to attenuate or enhance the gain of the semicircular canal-ocular reflex prior to undergoing otolith-ocular reflex testing with horizontal axis rotation. The adaptation paradigm paired a 0.2 Hz sinusoidal rotation about a vertical axis with a 0.2 Hz optokinetic stripe pattern that was deliberately mismatched in peak velocity. Pre- and post-adaptation horizontal axis rotations were at 60 degrees/s in the dark and produced a modulation in the slow component velocity of nystagmus having a frequency of 0.17 Hz due to putative stimulation of the otolith organs. Results showed that the magnitude of this modulation component response was altered in a manner similar to the alteration in semicircular canal-ocular responses. These results suggest that physiologic alteration of the vestibulo-ocular reflex using deliberately mismatched visual and semicircular canal stimuli induces changes in both canal-ocular and otolith-ocular responses. We postulate, therefore, that central nervous system pathways responsible for controlling the gains of canal-ocular and otolith-ocular reflexes are shared.

摘要

在黑暗中,眼球运动对地球垂直轴旋转(一种半规管刺激)的反应会因先前暴露于视觉 - 前庭联合刺激而改变。对于地球水平轴旋转(一种动态耳石刺激),尚未描述这种前庭眼反射的可塑性。20名正常人类受试者在进行水平轴旋转的耳石眼反射测试之前,接受了两种适应范式之一,这两种范式旨在减弱或增强半规管 - 眼反射的增益。适应范式将围绕垂直轴的0.2Hz正弦旋转与峰值速度故意不匹配的0.2Hz视动条纹图案配对。适应前和适应后的水平轴旋转在黑暗中以60度/秒的速度进行,并由于假定的耳石器官刺激,在频率为0.17Hz的眼震慢相速度中产生调制。结果表明,这种调制成分反应的幅度以类似于半规管 - 眼反应改变的方式发生改变。这些结果表明,使用故意不匹配的视觉和半规管刺激对前庭眼反射进行生理改变会导致半规管 - 眼反应和耳石 - 眼反应都发生变化。因此,我们推测,负责控制半规管 - 眼反射和耳石 - 眼反射增益的中枢神经系统通路是共享的。

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