Arousal Facilitates Collision Avoidance Mediated by a Looming Sensitive Visual Neuron in a Flying Locust
- 1 August 2008
- journal article
- research article
- Published by American Physiological Society in Journal of Neurophysiology
- Vol. 100 (2) , 670-680
- https://doi.org/10.1152/jn.01055.2007
Abstract
Locusts have two large collision-detecting neurons, the descending contralateral movement detectors (DCMDs) that signal object approach and trigger evasive glides during flight. We sought to investigate whether vision for action, when the locust is in an aroused state rather than a passive viewer, significantly alters visual processing in this collision-detecting pathway. To do this we used two different approaches to determine how the arousal state of a locust affects the prolonged periods of high-frequency spikes typical of the DCMD response to approaching objects that trigger evasive glides. First, we manipulated arousal state in the locust by applying a brief mechanical stimulation to the hind leg; this type of change of state occurs when gregarious locusts accumulate in high-density swarms. Second, we examined DCMD responses during flight because flight produces a heightened physiological state of arousal in locusts. When arousal was induced by either method we found that the DCMD response recovered from a previously habituated state; that it followed object motion throughout approach; and—most important—that it was significantly more likely to generate the maintained spike frequencies capable of evoking gliding dives even with extremely short intervals (1.8 s) between approaches. Overall, tethered flying locusts responded to 41% of simulated approaching objects (sets of 6 with 1.8 s ISI). When we injected epinastine, the neuronal octopamine receptor antagonist, into the hemolymph responsiveness declined to 12%, suggesting that octopamine plays a significant role in maintaining responsiveness of the DCMD and the locust to visual stimuli during flight.Keywords
This publication has 54 references indexed in Scilit:
- Influence of Electrotonic Structure and Synaptic Mapping on the Receptive Field Properties of a Collision-Detecting NeuronJournal of Neurophysiology, 2007
- Dynamic shifts of visual receptive fields in cortical area MT by spatial attentionNature Neuroscience, 2006
- From Disorder to Order in Marching LocustsScience, 2006
- Cyclic AMP Mediates Serotonin-Induced Synaptic Enhancement of Lateral Giant Interneuron of the CrayfishJournal of Neurophysiology, 2005
- Habituated visual neurons in locusts remain sensitive to novel looming objectsJournal of Experimental Biology, 2005
- Octopamine and Experience-Dependent Modulation of Aggression in CricketsJournal of Neuroscience, 2005
- Octopamine receptors in the honey bee and locust nervous system: pharmacological similarities between homologous receptors of distantly related speciesBritish Journal of Pharmacology, 2000
- The Effect of Social Experience on Serotonergic Modulation of the Escape Circuit of CrayfishScience, 1996
- Response to Novelty and its Rapid Habituation in Locus Coeruleus Neurons of the Freely Exploring RatEuropean Journal of Neuroscience, 1995
- A Multifunctional Role for Octopamine in Locust FlightAnnual Review of Entomology, 1993