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无序追踪与前庭眼反射抑制之间的关系。

The relationship between disordered pursuit and vestibulo-ocular reflex suppression.

作者信息

Chambers B R, Gresty M A

出版信息

J Neurol Neurosurg Psychiatry. 1983 Jan;46(1):61-6. doi: 10.1136/jnnp.46.1.61.

Abstract

The performance of the smooth pursuit reflex and the ability to suppress the vestibulo-ocular reflex were assessed in 10 normal subjects and in patients with a variety of diseases of the central nervous system. Pursuit was measured as the maximum velocity of slow phase eye movement in response to a laser target moving sinusoidally at various frequencies up to 1 Hz and with amplitudes stepped up to 35° peak. Suppression of the vestibulo-ocular reflex was assessed with subjects seated in a Barany chair rotating sinusoidally in yaw at matching frequencies. The breakpoint of vestibulo-ocular reflex supression was defined as the peak velocity of oscillation at which nystagmus appeared on electro-oculographic recording as determined by the method of ascending and descending thresholds. For normal subjects, at all frequencies, the breakpoint of suppression corresponded closely with the peak velocity of pursuit at the corresponding frequency of target oscillation. In some patients pursuit and suppression were comparably impaired. In others either pursuit or suppression could be selectively impaired with the other function left intact. The results demonstrate that the mechanisms of pursuit and visual suppression of the vestibulo-ocular reflex have similar dynamics and share a common pathway at least to the level of the cerebellum. Thereafter, there is presumably an anatomical and functional dissociation of the signals mediating the two functions. The key area involved appears to be the flocculus for lesions of this structure alone cause impairment of both functions. The findings also indicate that the appropriate way to test smooth pursuit in relationship to suppression is to increase the amplitude of target oscillation until the peak slow eye movement velocity is determined for each frequency. The finding that increasing excursion increases maximum pursuit velocity supports the view that pursuit has an acceleration limit which is more critical in determining performance than velocity limitations. The results establish the assessment of vestibulo-ocular reflex suppression as a powerful test of the integrity of CNS function independent of its previous association with disordered pursuit.

摘要

对10名正常受试者以及患有各种中枢神经系统疾病的患者进行了平稳跟踪反射性能和抑制前庭眼反射能力的评估。跟踪通过慢相眼动的最大速度来衡量,该速度是对以高达1Hz的各种频率正弦运动且幅度逐步增加至35°峰值的激光目标的响应。让受试者坐在绕偏航方向正弦旋转的巴兰椅上,以匹配频率评估前庭眼反射的抑制情况。前庭眼反射抑制的断点定义为通过升降阈值法在眼电图记录上出现眼球震颤时的振荡峰值速度。对于正常受试者,在所有频率下,抑制断点与目标振荡相应频率下的跟踪峰值速度密切对应。在一些患者中,跟踪和抑制同样受损。在另一些患者中,要么跟踪要么抑制可能会被选择性地损害,而另一种功能保持完好。结果表明,跟踪机制和前庭眼反射的视觉抑制具有相似的动力学,并且至少在小脑水平共享一条共同通路。此后,介导这两种功能的信号可能在解剖学和功能上存在分离。涉及的关键区域似乎是绒球,因为仅该结构的损伤就会导致两种功能受损。研究结果还表明,测试与抑制相关的平稳跟踪的合适方法是增加目标振荡的幅度,直到确定每个频率下的慢眼运动峰值速度。增加偏移会增加最大跟踪速度这一发现支持了这样一种观点,即跟踪存在加速度限制,在决定性能方面,加速度限制比速度限制更为关键。这些结果确立了前庭眼反射抑制评估作为一种强大的测试中枢神经系统功能完整性的方法,而与它之前与异常跟踪的关联无关。

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J Neurol Neurosurg Psychiatry. 1982 Nov;45(11):998-1004. doi: 10.1136/jnnp.45.11.998.
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