Goffart Laurent, Chen Longtang L, Sparks David L
Department of Psychology, University of Pennsylvania, Philadelphia, Pennsylvania 19104, USA.
J Neurophysiol. 2004 Dec;92(6):3351-67. doi: 10.1152/jn.01199.2003. Epub 2004 Jun 30.
The caudal fastigial nucleus (cFN) is a major nucleus by which the cerebellum influences the accuracy of saccades. In head-restrained monkeys generating saccades from a fixation light-emitting diode (LED) toward a flashed target LED, we analyzed the effects of unilateral pharmacological inactivation of cFN on horizontal, vertical, and oblique saccades. When animals were viewing the fixation LED, usually after one or more correction saccades, the positions of the eyes were slightly offset in comparison with the positions maintained before the injection (average offset = 1.1 degrees). The offset was ipsilateral to the injected side and did not depend on the target location. The horizontal component of all ipsilesional saccades was hypermetric and associated with a 32-42% increase in the amplitude of the deceleration displacement without significant change in the amplitude of the acceleration displacement. The horizontal component of all contralesional saccades was hypometric and associated with a decrease in the peak velocity and in the acceleration amplitude (30-35% decrease) without significant change in the deceleration amplitude. The amplitude of vertical saccades was not systematically affected, but their trajectory was always deviated toward the injected side. They missed the target with an error that depended on saccade duration or amplitude. If any, the effects of muscimol injections on the vertical component of oblique saccades were very small. The changes in fixation and the dysmetria are both viewed as consequences of an impairment in the cFN bilateral influence on the burst neurons located in the left and right brain stem.
尾侧顶核(cFN)是小脑影响扫视准确性的主要核团。在头部固定的猴子中,从固定发光二极管(LED)向闪烁的目标LED产生扫视时,我们分析了cFN单侧药物失活对水平、垂直和斜向扫视的影响。当动物注视固定LED时,通常在一次或多次校正扫视之后,与注射前保持的位置相比,眼睛位置略有偏移(平均偏移 = 1.1度)。偏移在注射侧的同侧,且不依赖于目标位置。所有同侧扫视的水平分量过大,减速位移幅度增加32 - 42%,而加速位移幅度无显著变化。所有对侧扫视的水平分量过小,峰值速度和加速度幅度降低(降低30 - 35%),而减速幅度无显著变化。垂直扫视的幅度没有受到系统性影响,但其轨迹总是偏向注射侧。它们错过目标的误差取决于扫视持续时间或幅度。如果有影响的话,蝇蕈醇注射对斜向扫视垂直分量的影响非常小。注视的变化和眼球运动失调都被视为cFN对位于左右脑干的爆发神经元的双侧影响受损的结果。