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在对猴子尾侧顶核进行蝇蕈醇失活后,头部无约束注视转移时的扫视辨距不良。

Saccade dysmetria in head-unrestrained gaze shifts after muscimol inactivation of the caudal fastigial nucleus in the monkey.

作者信息

Quinet Julie, Goffart Laurent

机构信息

Institut National de la Santé et de la Recherche Médicale /Université Claude Bernard-Lyon, Institut Fédératif des Neurosciences de Lyon, Bron.

出版信息

J Neurophysiol. 2005 Apr;93(4):2343-9. doi: 10.1152/jn.00705.2004. Epub 2004 Nov 24.

Abstract

Lesions in the caudal fastigial nucleus (cFN) severely impair the accuracy of visually guided saccades in the head-restrained monkey. Is the saccade dysmetria a central perturbation in issuing commands for orienting gaze (eye in space) or is it a more peripheral impairment in generating oculomotor commands? This question was investigated in two head-unrestrained monkeys by analyzing the effect of inactivating one cFN on horizontal gaze shifts generated from a straight ahead fixation light-emitting diode (LED) toward a 40 degrees eccentric target LED. After muscimol injections, when viewing the fixation LED, the starting position of the head was changed (ipsilesional and upward deviations). Ipsilesional gaze shifts were associated with a 24% increase in the eye saccade amplitude and a 58% reduction in the amplitude of the head contribution. Contralesional gaze shifts were associated with a decrease in the amplitude of both eye and head components (40 and 37% reduction, respectively). No correlation between the changes in the eye amplitude and in head contribution was observed. The amplitude of the complete head movement was decreased for ipsilesional movements (57% reduction) and unaffected for contralesional movements. For both ipsilesional and contralesional gaze shifts, the changes in eye saccade amplitude were strongly correlated with the changes in gaze amplitude and largely accounted for the gaze dysmetria. These results indicate a major role of cFN in the generation of appropriate saccadic oculomotor commands during head-unrestrained gaze shifts.

摘要

尾侧顶核(cFN)的损伤会严重损害头部固定的猴子在视觉引导下扫视的准确性。扫视测距障碍是在发出定向注视(空间中的眼睛)命令时的中枢扰动,还是在产生眼球运动命令时更外周的损伤呢?通过分析灭活一侧cFN对从正前方固定发光二极管(LED)向40度偏心目标LED产生的水平注视转移的影响,在两只头部未固定的猴子中研究了这个问题。注射蝇蕈醇后,当注视固定LED时,头部的起始位置发生了变化(同侧和向上偏移)。同侧注视转移与眼球扫视幅度增加24%以及头部贡献幅度降低58%相关。对侧注视转移与眼球和头部成分的幅度均降低相关(分别降低40%和37%)。未观察到眼球幅度变化与头部贡献变化之间的相关性。同侧运动时整个头部运动的幅度降低(降低57%),对侧运动时则未受影响。对于同侧和对侧注视转移,眼球扫视幅度的变化与注视幅度的变化密切相关,并且在很大程度上导致了注视测距障碍。这些结果表明,cFN在头部未固定的注视转移过程中产生适当的扫视眼球运动命令方面起着主要作用。

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