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Electrical stimulation of the superior colliculus induces non-topographically organized perturbation of reaching movements in cats

机译:上丘的电刺激引起猫的到达运动的非地形组织扰动

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摘要

Besides its well-known contribution to orienting behaviors, the superior colliculus (SC) might also play a role in controlling visually guided reaching movements. This view has been inferred from studies in monkeys showing that some tectal cells located in the deep layers are active prior to reaching movements; it was corroborated by functional imaging studies performed in humans. Likewise, our group has already demonstrated that, in cats, SC electrical stimulation can modify the trajectory of goal-directed forelimb movements without necessarily affecting the gaze position. However, as in monkeys, we could not establish any congruence between the usual retinotopic SC map and direction of evoked forelimb movements, albeit only a small portion of the collicular map was investigated. Therefore, the aim of the current study was to further ascertain the causal contribution of SC to reaching movement by exploring the whole collicular map. Our results confirmed that SC electrical stimulation deflected the trajectory of reaching movements, but this deviation was always directed downward and backward, irrespective of the location of the stimulation site. The lack of a complete map of reach directions in the SC and the absence of congruence between the direction of evoked forelimb movements and the collicular oculomotor map challenge the view that, in the cat, the SC causally contributes to coding forelimb movements. Interestingly, the very short latencies of the effect argue also against the interruption of reaching movements being driven by a disruption of the early visual processing. Our results rather suggest that the SC might contribute to the reach target selection process. Alternatively, SC stimulation might have triggered a postural adjustment anticipating an upcoming orienting reaction, leading to an interruption of the on-going reaching movement.
机译:除了对定向行为的众所周知的贡献外,上丘(SC)还可在控制视觉引导的伸手动作中发挥作用。从对猴子的研究中可以推断出这种观点,研究表明,位于深层的某些顶盖细胞在到达运动之前是活跃的。在人体中进行的功能成像研究证实了这一点。同样,我们的研究小组已经证明,在猫中,SC电刺激可以改变目标导向的前肢运动的轨迹,而不必影响凝视位置。但是,像猴子一样,尽管仅对一小部分胶状体图进行了研究,但我们无法在通常的视网膜局部SC线图与诱发的前肢运动方向之间建立任何一致性。因此,本研究的目的是通过探索整个胶体图来进一步确定SC对运动产生的因果关系。我们的结果证实,SC电刺激使到达运动的轨迹发生了偏转,但是,无论刺激部位的位置如何,该偏差始终朝下和向后。 SC中缺少完整的到达方向图,而诱发的前肢运动的方向与胶体动眼图之间也缺乏一致性,这挑战了以下观点:在猫中,SC确实有助于编码前肢运动。有趣的是,效果的短暂延迟也反对由早期视觉处理的中断所驱动的到达动作的中断。我们的结果反而暗示标准委可能有助于达到目标选择过程。或者,SC刺激可能已经触发了姿势调整,预期即将发生的定向反应,从而导致正在进行的到达运动的中断。

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