Department of Biophysics, Donders Institute, Radboud University, Nijmegen, The Netherlands.
School of Computer Science, Institute for Research in Fundamental Sciences, Tehran, Iran.
Sci Rep. 2021 May 18;11(1):10490. doi: 10.1038/s41598-021-89974-y.
Visual motion perception depends on readout of direction selective sensors. We investigated in mice whether the response to bidirectional transparent motion, activating oppositely tuned sensors, reflects integration (averaging) or winner-take-all (mutual inhibition) mechanisms. We measured whole body opto-locomotor reflexes (OLRs) to bidirectional oppositely moving random dot patterns (leftward and rightward) and compared the response to predictions based on responses to unidirectional motion (leftward or rightward). In addition, responses were compared to stimulation with stationary patterns. When comparing OLRs to bidirectional and unidirectional conditions, we found that the OLR to bidirectional motion best fits an averaging model. These results reflect integration mechanisms in neural responses to contradicting sensory evidence as has been documented for other sensory and motor domains.
视觉运动感知取决于对方向选择性传感器的读出。我们在小鼠中研究了双向透明运动的反应(激活相反调谐的传感器)是否反映了整合(平均)或胜者全拿(相互抑制)机制。我们测量了全身光运动反射(OLR)对双向相反运动的随机点模式(向左和向右),并将反应与基于单向运动(向左或向右)的反应的预测进行了比较。此外,还将反应与静止模式的刺激进行了比较。在将 OLR 与双向和单向条件进行比较时,我们发现双向运动的 OLR 最符合平均模型。这些结果反映了神经反应中整合机制,这些机制与其他感觉和运动领域中记录的矛盾感觉证据一致。