Philipps-Universität Marburg, Tierphysiologie, D-35032 Marburg, Germany.
J Neurosci. 2013 May 8;33(19):8122-33. doi: 10.1523/JNEUROSCI.5390-12.2013.
In many situations animals are confronted with approaching objects. Depending on whether the approach represents a potential threat or is intended during a goal-oriented approach, the adequate behavioral strategies differ. In all of these cases the visual system experiences an expanding or looming shape. The neuronal machinery mediating looming elicited behavioral responses has been studied most comprehensively in insects but is still far from being fully understood. It is particularly unknown how insects adjust their behavior to objects approaching from different directions. A brain structure that is thought to play an important role in spatial orientation in insects is the central complex (CC). We investigated whether CC neurons process information about approaching objects on a collision course. We recorded intracellularly from CC neurons in the locust Schistocerca gregaria during visual stimulation via lateral LCD screens. Many neurons in the locust CC, including columnar and tangential neurons, were sensitive to looming stimuli. Some of the neurons also responded to small moving targets. Several cell types showed binocular responses to looming objects, and some neurons were excited or inhibited depending on which eye was stimulated. These neurons may, therefore, detect the gross azimuthal direction of approaching objects and may mediate directional components of escape or steering movements.
在许多情况下,动物都会面临接近的物体。根据接近的物体是潜在威胁还是有目的的接近,适当的行为策略会有所不同。在所有这些情况下,视觉系统都会体验到扩展或逼近的形状。在昆虫中,介导逼近引发的行为反应的神经元机制已经得到了最全面的研究,但仍远未完全理解。特别是,昆虫如何根据从不同方向接近的物体来调整行为,这一点还不清楚。中央复合体(CC)被认为在昆虫的空间定向中起着重要作用。我们研究了 CC 神经元是否对迎头逼近的物体进行信息处理。我们在 locust Schistocerca gregaria 的 CC 神经元中进行了细胞内记录,这些神经元在通过侧置液晶显示屏进行视觉刺激时会被激活。蝗虫 CC 中的许多神经元,包括柱状和切线神经元,对逼近刺激敏感。一些神经元也对小的移动目标有反应。几种细胞类型对逼近的物体有双目反应,一些神经元根据哪个眼睛被刺激而兴奋或抑制。因此,这些神经元可能检测到接近物体的大致方位角,并可能介导逃避或转向运动的方向成分。