Wang Jiangtao, Qian Longlong, Wang Songwei, Shi Li, Wang Zhizhong
Henan Key Laboratory of Brain Science and Brain-Computer Interface Technology, School of Electrical Engineering, Zhengzhou University, Zhengzhou 450001, China.
Department of Automation, Tsinghua University, Beijing 100084, China.
Animals (Basel). 2022 Apr 28;12(9):1143. doi: 10.3390/ani12091143.
Neurons responding sensitively to motions in several rather than all directions have been identified in many sensory systems. Although this directional preference has been demonstrated by previous studies to exist in the isthmi pars magnocellularis (Imc) of pigeon (), which plays a key role in the midbrain saliency computing network, the dynamic response characteristics and the physiological basis underlying this phenomenon are unclear. Herein, dots moving in 16 directions and a biologically plausible computational model were used. We found that pigeon Imc's significant responses for objects moving in preferred directions benefit the long response duration and high instantaneous firing rate. Furthermore, the receptive field structures predicted by a computational model, which captures the actual directional tuning curves, agree with the real data collected from population Imc units. These results suggested that directional preference in Imc may be internally prebuilt by elongating the vertical axis of the receptive field, making predators attack from the dorsal-ventral direction and conspecifics flying away in the ventral-dorsal direction, more salient for avians, which is of great ecological and physiological significance for survival.
在许多感觉系统中,已发现对多个而非所有方向的运动敏感响应的神经元。尽管先前的研究已证明这种方向偏好存在于鸽子的峡核大细胞部(Imc)中,该区域在中脑显著性计算网络中起关键作用,但这种现象背后的动态响应特性和生理基础尚不清楚。在此,使用了在16个方向上移动的点以及一个生物学上合理的计算模型。我们发现,鸽子Imc对沿偏好方向移动的物体的显著反应得益于较长的反应持续时间和较高的瞬时放电率。此外,计算模型预测的感受野结构与从群体Imc单元收集的实际数据相符,该模型捕捉了实际的方向调谐曲线。这些结果表明,Imc中的方向偏好可能通过延长感受野的垂直轴在内部预先构建,使得捕食者从背腹方向攻击以及同种个体从腹背方向飞走,对鸟类来说更加显著,这对生存具有重要的生态和生理意义。