Departamento de Ciencia y Tecnología, Universidad Nacional de Quilmes, Roque S. Peña 352, B1876BXD, Bernal, Pcia De Buenos Aires, Argentina.
J Comp Physiol A Neuroethol Sens Neural Behav Physiol. 2018 May;204(5):487-503. doi: 10.1007/s00359-018-1257-1. Epub 2018 Mar 24.
Looming-sensitive neurons (LSNs) are motion-sensitive neurons tuned for detecting imminent collision. Their main characteristic is the selectivity to looming (a 2D representation of an object approach), rather than to receding stimuli. We studied a set of LSNs by performing surface extracellular recordings in the optic nerve of Neohelice granulata crabs, and characterized their response against computer-generated visual stimuli with different combinations of moving edges, highlighting different components of the optical flow. In addition to their selectivity to looming stimuli, we characterized other properties of these neurons, such as low directionality; reduced response to sustained excitement; and an inhibition phenomenon in response to visual stimuli with dense optical flow of expansion, contraction, and translation. To analyze the spatio-temporal processing of these LSNs, we proposed a biologically plausible computational model which was inspired by previous computational models of the locust lobula giant motion detector (LGMD) neuron. The videos seen by the animal during electrophysiological experiments were applied as an input to the model which produced a satisfactory fit to the measured responses, suggesting that the computation performed by LSNs in a decapod crustacean appears to be based on similar physiological processing previously described for the LGMD in insects.
looming 敏感神经元 (LSNs) 是对检测即将发生的碰撞敏感的运动敏感神经元。它们的主要特征是对逼近(物体逼近的 2D 表示)的选择性,而不是对后退刺激的选择性。我们通过在 neohelice granulata 蟹的视神经中进行表面细胞外记录来研究一组 LSN,并使用具有不同运动边缘组合的计算机生成视觉刺激来表征它们的反应,突出了光流的不同成分。除了对逼近刺激的选择性之外,我们还描述了这些神经元的其他特性,例如低方向性;对持续兴奋的反应减少;以及对密集光流扩张、收缩和平移的视觉刺激的抑制现象。为了分析这些 LSN 的时空处理,我们提出了一个基于先前蝗虫小叶巨型运动探测器 (LGMD) 神经元的计算模型的生物合理计算模型。动物在电生理实验中看到的视频被用作模型的输入,模型产生了与测量响应的令人满意的拟合,这表明甲壳类动物 LSN 所执行的计算似乎基于先前在昆虫中描述的 LGMD 的类似生理处理。