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棕色大鼠下橄榄核损伤后视动性控制眼动的动态特征

Dynamic characteristics of optokinetically controlled eye movements following inferior olive lesions in the brown rat.

作者信息

Hess B J, Savio T, Strata P

机构信息

Institut für Hirnforschung der Universität Zürich, Switzerland.

出版信息

J Physiol. 1988 Mar;397:349-70. doi: 10.1113/jphysiol.1988.sp017005.

Abstract
  1. The inferior olive was destroyed by the drug 3-acetylpyridine in brown rats. Spontaneous and optokinetic eye movements in response to constant-velocity rotation (5-80 deg/s) or sinusoidal oscillations (0.05 and 0.1 Hz with 15 deg/s peak velocity and 0.3, 0.5, 1.0 and 2 Hz with 5 deg/s peak velocity) of the visual surround were recorded 4-6 days, 40-50 days and 3-4 months after the lesion using the magnetic search coil technique. 2. Persistent oculomotor deficits were observed in rats with a lesion of more than 97% of inferior olive neurones. In cases with a less complete lesion, no or only transient deficits were observed. In these latter cases the bulk of surviving neurones was located in the caudal half of the inferior olive, which includes the dorsal cap of Kooy. 3. Eye position holding after saccadic gaze shifts in the light was strongly deficient, showing pronounced postsaccadic centripetal drift for several hundred milliseconds. Similar deficits were observed in slow-phase components following quick phases of optokinetic nystagmus. In the dark, eye position holding was also deficient. 4. Closed-loop gains of optokinetic step responses obtained from rats with inferior olive lesions could be as good as those obtained from control animals. There was, however, a trend towards smaller gain values over the range of stimulus velocities tested. The duration of optokinetic after-nystagmus was not changed. 5. The initial fast rise of slow-phase velocity of optokinetic step responses was reduced by about 30-50%, showing no recovery in the follow-up experiments up to 3-4 months after the lesion. 6. Optokinetic responses to sinusoidal oscillations of the visual surround exhibited an increasing drop in gain for frequencies between 0.1 to 0.5 Hz. In the range of 0.5-2.0 Hz gain was only about 0.2 compared to 0.7-0.8 in control animals. Phase lag of sinusoidal responses was shifted to larger values by about 25-35 deg for frequencies increasing from 0.1 to 0.5 Hz. At 1.0 Hz phase shift was reduced to about 15 deg and at 2.0 Hz no significant change in phase was observed. Both gain and phase of sinusoidal responses showed some recovery when tested 3-4 months after inferior olive lesion. 7. The results suggest that inferior olive lesions impair velocity-to-position integration, mainly as a consequence of the missing climbing fibre input to the cerebellar flocculi.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 在棕色大鼠中,药物3 - 乙酰吡啶破坏了下橄榄核。在损伤后的4 - 6天、40 - 50天以及3 - 4个月,使用磁搜索线圈技术记录了大鼠对视觉环境的匀速旋转(5 - 80度/秒)或正弦振荡(0.05和0.1赫兹,峰值速度15度/秒;以及0.3、0.5、1.0和2赫兹,峰值速度5度/秒)所产生的自发和视动性眼动。2. 在下橄榄核神经元损伤超过97%的大鼠中观察到了持续性眼动缺陷。在损伤不太完全的情况下,未观察到缺陷或仅观察到短暂的缺陷。在这些后一种情况下,存活神经元的大部分位于下橄榄核的尾侧半部分,其中包括库伊背帽。3. 在光照下扫视注视转移后的眼位保持严重不足,在几百毫秒内显示出明显的扫视后向心性漂移。在视动性眼球震颤的快相之后的慢相成分中也观察到了类似的缺陷。在黑暗中,眼位保持也不足。4. 下橄榄核损伤大鼠的视动性阶跃反应的闭环增益可以与对照动物的增益一样好。然而,在所测试的刺激速度范围内,有增益值变小的趋势。视动性眼震后效的持续时间没有改变。5. 视动性阶跃反应的慢相速度的初始快速上升降低了约30 - 50%,在损伤后的后续实验中直至3 - 4个月都没有恢复。6. 对视觉环境正弦振荡的视动反应在0.1至0.5赫兹的频率范围内增益下降越来越大。在0.5 - 2.0赫兹范围内,增益仅约为0.2,而对照动物为0.7 - 0.8。随着频率从0.1增加到0.5赫兹,正弦反应的相位滞后向更大的值偏移约25 - 35度。在1.0赫兹时相位偏移减少到约15度,在2.0赫兹时未观察到相位的显著变化。在下橄榄核损伤3 - 4个月后进行测试时,正弦反应的增益和相位都显示出一些恢复。7. 结果表明,下橄榄核损伤损害了速度到位置的整合,主要是由于缺失了向小脑绒球的攀爬纤维输入。(摘要截断于400字)

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THE MECHANICS OF HUMAN SACCADIC EYE MOVEMENT.人类眼球快速运动的力学原理
J Physiol. 1964 Nov;174(2):245-64. doi: 10.1113/jphysiol.1964.sp007485.

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