McArthur Kimberly L, Dickman J David
Department of Anatomy and Neurobiology, Washington University School of Medicine, St. Louis, MO 63110, USA.
J Neurophysiol. 2008 Sep;100(3):1488-97. doi: 10.1152/jn.90257.2008. Epub 2008 Jul 16.
Gaze-stabilizing eye and head responses compensate more effectively for low-frequency rotational motion when such motion stimulates the otolith organs, as during earth-horizontal axis rotations. However, the nature of the otolith signal responsible for this improvement in performance has not been previously determined. In this study, we used combinations of earth-horizontal axis rotational and translational motion to manipulate the magnitude of net linear acceleration experienced by pigeons, under both head-fixed and head-free conditions. We show that phase enhancement of eye and head responses to low-frequency rotational motion was causally related to the magnitude of dynamic net linear acceleration and not the gravitational acceleration component. We also show that canal-driven and otolith-driven eye responses were both spatially and temporally appropriate to combine linearly, and that a simple linear model combining canal- and otolith-driven components predicted eye responses to complex motion that were consistent with our experimental observations. However, the same model did not predict the observed head responses, which were spatially but not temporally appropriate to combine according to the same linear scheme. These results suggest that distinct vestibular processing substrates exist for eye and head responses in pigeons and that these are likely different from the vestibular processing substrates observed in primates.
当这种运动刺激耳石器官时,如在地平轴旋转过程中,稳定注视的眼球和头部反应能更有效地补偿低频旋转运动。然而,此前尚未确定导致这种性能改善的耳石信号的性质。在本研究中,我们利用地平轴旋转和平移运动的组合,在头部固定和自由的条件下,操纵鸽子所经历的净线性加速度的大小。我们发现,眼球和头部对低频旋转运动反应的相位增强与动态净线性加速度的大小因果相关,而非重力加速度分量。我们还表明,半规管驱动和耳石驱动的眼球反应在空间和时间上都适合线性组合,并且一个简单的将半规管和耳石驱动成分相结合的线性模型预测的眼球对复杂运动的反应与我们的实验观察结果一致。然而,同一模型并未预测出观察到的头部反应,其在空间上适合但在时间上不适合按照相同的线性方案进行组合。这些结果表明,鸽子的眼球和头部反应存在不同的前庭处理基质,并且这些可能与在灵长类动物中观察到的前庭处理基质不同。