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促进神经对与光流方向相反运动的目标的反应。

Facilitation of neural responses to targets moving against optic flow.

机构信息

Flinders Health and Medical Research Institute, Flinders University, Adelaide, SA 5001, Australia.

Flinders Health and Medical Research Institute, Flinders University, Adelaide, SA 5001, Australia;

出版信息

Proc Natl Acad Sci U S A. 2021 Sep 21;118(38). doi: 10.1073/pnas.2024966118.

Abstract

For the human observer, it can be difficult to follow the motion of small objects, especially when they move against background clutter. In contrast, insects efficiently do this, as evidenced by their ability to capture prey, pursue conspecifics, or defend territories, even in highly textured surrounds. We here recorded from target selective descending neurons (TSDNs), which likely subserve these impressive behaviors. To simulate the type of optic flow that would be generated by the pursuer's own movements through the world, we used the motion of a perspective corrected sparse dot field. We show that hoverfly TSDN responses to target motion are suppressed when such optic flow moves syn-directional to the target. Indeed, neural responses are strongly suppressed when targets move over either translational sideslip or rotational yaw. More strikingly, we show that TSDNs are facilitated by optic flow moving counterdirectional to the target, if the target moves horizontally. Furthermore, we show that a small, frontal spatial window of optic flow is enough to fully facilitate or suppress TSDN responses to target motion. We argue that such TSDN response facilitation could be beneficial in modulating corrective turns during target pursuit.

摘要

对于人类观察者来说,跟踪小物体的运动可能很困难,尤其是当它们在背景杂乱的情况下移动时。相比之下,昆虫在这方面效率很高,这从它们捕捉猎物、追逐同种个体或保护领地的能力中可以明显看出,即使在高度纹理化的环境中也是如此。我们在这里记录了目标选择下行神经元(TSDNs),这些神经元可能与这些令人印象深刻的行为有关。为了模拟由追逐者自身在世界中的运动产生的光流类型,我们使用了经透视校正的稀疏点场的运动。我们表明,当这种光流向目标的相同方向移动时,食蚜蝇 TSDN 对目标运动的反应会受到抑制。事实上,当目标在横向平移侧滑或旋转偏航时,神经反应受到强烈抑制。更引人注目的是,我们表明,如果目标水平移动,与目标相反方向的光流会促进 TSDN 对目标运动的反应。此外,我们表明,一个小的、正面的光流空间窗口足以完全促进或抑制 TSDN 对目标运动的反应。我们认为,这种 TSDN 反应促进可能有助于在目标追踪过程中调节纠正转弯。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9237/8463850/45e83a092bde/pnas.2024966118fig01.jpg

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