Drexel University, School of Biomedical Engineering, Science and Health Systems, Philadelphia, PA 19104, USA.
Drexel University College of Medicine, Department of Neurobiology and Anatomy, Philadelphia, PA 19129, USA.
J Exp Biol. 2023 Apr 15;226(8). doi: 10.1242/jeb.244790. Epub 2023 Apr 20.
Spatially invariant feature detection is a property of many visual systems that rely on visual information provided by two eyes. However, how information across both eyes is integrated for invariant feature detection is not fully understood. Here, we investigated spatial invariance of looming responses in descending neurons (DNs) of Drosophila melanogaster. We found that multiple looming responsive DNs integrate looming information across both eyes, even though their dendrites are restricted to a single visual hemisphere. One DN, the giant fiber (GF), responds invariantly to looming stimuli across tested azimuthal locations. We confirmed visual information propagates to the GF from the contralateral eye, through an unidentified pathway, and demonstrated that the absence of this pathway alters GF responses to looming stimuli presented to the ipsilateral eye. Our data highlight a role for bilateral visual integration in generating consistent, looming-evoked escape responses that are robust across different stimulus locations and parameters.
空间不变特征检测是许多依赖双眼提供视觉信息的视觉系统的特性。然而,对于如何整合双眼信息以进行不变特征检测,目前还不完全清楚。在这里,我们研究了果蝇下降神经元(DNs)中逼近反应的空间不变性。我们发现,多个逼近反应的 DNs 即使其树突仅限于单个视觉半球,也能整合来自双眼的逼近信息。一个 DN,即巨大纤维(GF),对测试方位角位置的逼近刺激表现出不变的反应。我们证实,视觉信息从对侧眼通过一条未识别的途径传播到 GF,并证明该途径的缺失会改变 GF 对同侧眼呈现的逼近刺激的反应。我们的数据强调了双侧视觉整合在产生一致的、由逼近引发的逃避反应中的作用,这种反应在不同的刺激位置和参数下都是稳健的。