Wertz Adrian, Borst Alexander, Haag Juergen
Department of Systems and Computational Neurobiology, Max-Planck-Institute of Neurobiology, D-82152 Martinsried, Germany.
J Neurosci. 2008 Mar 19;28(12):3131-40. doi: 10.1523/JNEUROSCI.5460-07.2008.
For visual orientation and course stabilization, flies rely heavily on the optic flow perceived by the animal during flight. The processing of optic flow is performed in motion-sensitive tangential cells of the lobula plate, which are well described with respect to their visual response properties and the connectivity among them. However, little is known about the postsynaptic descending neurons, which convey motion information to the motor circuits in the thoracic ganglion. Here we investigate the physiology and connectivity of an identified premotor descending neuron, called DNOVS2 (for descending neuron of the ocellar and vertical system). We find that DNOVS2 is tuned in a supralinear way to rotation around the longitudinal body axis. Experiments involving stimulation of the ipsilateral and the contralateral eye indicate that ipsilateral computation of motion information is modified nonlinearly by motion information from the contralateral eye. Performing double recordings of DNOVS2 and lobula plate tangential cells, we find that DNOVS2 is connected ipsilaterally to a subset of vertical-sensitive cells. From the contralateral eye, DNOVS2 receives input most likely from V2, a heterolateral spiking neuron. This specific neural circuit is sufficient for the tuning of DNOVS2, making it probably an important element in optomotor roll movements of the head and body around the fly's longitudinal axis.
为了实现视觉定向和航向稳定,果蝇在飞行过程中严重依赖于动物所感知到的光流。光流的处理在小叶板的运动敏感切向细胞中进行,这些细胞在视觉反应特性及其之间的连接性方面已有充分描述。然而,对于将运动信息传递到胸神经节运动回路的突触后下行神经元,我们却知之甚少。在此,我们研究了一种已确定的运动前下行神经元DNOVS2(用于眼和垂直系统的下行神经元)的生理学特性和连接性。我们发现,DNOVS2以超线性方式对围绕身体纵轴的旋转进行调谐。涉及刺激同侧眼和对侧眼的实验表明,来自对侧眼的运动信息会非线性地改变同侧运动信息的计算。在对DNOVS2和小叶板切向细胞进行双记录时,我们发现DNOVS2同侧连接到一组垂直敏感细胞。来自对侧眼的信息,DNOVS2最有可能从V2(一个异侧的发放神经元)接收输入。这种特定的神经回路足以对DNOVS2进行调谐,使其可能成为果蝇头部和身体围绕纵轴进行视动翻滚运动的一个重要元件。