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首页> 外文期刊>The Journal of Experimental Biology >Head-bobbing in pigeons: How stable is the hold phase?
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Head-bobbing in pigeons: How stable is the hold phase?

机译:扑鼻:保持阶段的稳定性如何?

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The head movement of a walking pigeon Columba livia is characterized by two alternating phases, a thrust phase and a hold phase. While the head is rapidly thrust forward during the thrust phase, it has been shown repeatedly that it remains virtually motionless with respect to translation along a horizontal axis (roll axis) during the hold phase. It has been shown that the stabilization during the hold phase is under visual control, This has led to the view that the pigeon's head-bobbing is an optokinetic response to stabilize the retinal image during the hold phase. However, it has never been shown explicitly that the head is really held stable in space with respect to other translatory or rotatory dimensions. Using videography, we show here that this is in fact the case: except for a small but systematic slip that presumably serves as an error signal for retinal image stabilization, the head of the pigeon remains locked in space not only with respect to the horizontal (roll) axis but also with respect to vertical translation (along the yaw axis) and with respect to rotation around the pitch and yaw axes. [References: 24]
机译:幼鸽“哥伦巴利维亚”的头部运动以两个交替阶段为特征,即推力阶段和保持阶段。尽管头部在推力阶段迅速向前推,但反复表明,在保持阶段,它相对于沿水平轴(横摇轴)的平移几乎保持静止。已经显示,在保持阶段中的稳定是在视觉控制下的。这导致了这样的观点,即鸽子的头部摆动是在保持阶段中稳定视网膜图像的视动响应。但是,从未明确表明头部相对于其他平移或旋转尺寸确实在空间上保持稳定。使用摄录机,我们在这里证明确实是这样:除了很小但系统的打滑可能会为视网膜图像稳定提供误差信号之外,鸽子的头不仅在水平方向上保持锁定在空间中(横摇)轴,也相对于垂直平移(沿偏航轴)以及绕俯仰和偏航轴的旋转。 [参考:24]

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