The capacity of animals to measure time and adjust their behaviors accordingly has been a topic of interest in vertebrates, but little evidence is currently available for insects. This capacity has yet to be properly investigated in parasitoid wasps, even though they are frequently used to test ecological models. Here, using associative learning between odors and time intervals, we show that the parasitoid wasp Microplitis croceipes (Hymenoptera: Braconidae) has the capacity to measure time. When released in a wind tunnel, females flew toward an odor associated with the time interval they had just experienced. We also found that reducing energy expenditure by restraining parasitoid wasp movement during the training interval prevented time p...
Behavioural decisions require the appropriate use of relevant information about the environment. How...
Animals have evolved the capacity to learn, and the conventional view is that learning allows indivi...
The Journal of Experimental Biology Circadian rhythms in social insects are highly plastic and are m...
The capacity of animals to measure time and adjust their behaviors accordingly has been a topic of i...
The two closely related parasitoids Cotesia glomerata and C. rubecula (Hymenoptera: Braconidae) coex...
Work on insect learning has made ample use of conditioned behaviors in single learning tasks. Parasi...
Background. Habituation, a form of non-associative learning, has several well-defined characteristic...
sous presseInternational audienceIn this paper, we review the learning capacities of insect parasito...
In this paper, we review the learning capacities of insect parasitoids. We present data on the learn...
Associative learning is well documented in Hymenopteran parasitoids, where it is thought to be an ad...
Although the neural and genetic pathways underlying learning and memory formation seem strikingly si...
A prototype chemical sensor named Wasp hound® that utilizes five classically conditioned parasitoid ...
Although the neural and genetic pathways underlying learning and memory formation seem strikingly si...
Although the neural and genetic pathways underlying learning and memory formation seem strikingly si...
Insects are useful model organisms to study learning and memory. Their brains are less complex than ...
Behavioural decisions require the appropriate use of relevant information about the environment. How...
Animals have evolved the capacity to learn, and the conventional view is that learning allows indivi...
The Journal of Experimental Biology Circadian rhythms in social insects are highly plastic and are m...
The capacity of animals to measure time and adjust their behaviors accordingly has been a topic of i...
The two closely related parasitoids Cotesia glomerata and C. rubecula (Hymenoptera: Braconidae) coex...
Work on insect learning has made ample use of conditioned behaviors in single learning tasks. Parasi...
Background. Habituation, a form of non-associative learning, has several well-defined characteristic...
sous presseInternational audienceIn this paper, we review the learning capacities of insect parasito...
In this paper, we review the learning capacities of insect parasitoids. We present data on the learn...
Associative learning is well documented in Hymenopteran parasitoids, where it is thought to be an ad...
Although the neural and genetic pathways underlying learning and memory formation seem strikingly si...
A prototype chemical sensor named Wasp hound® that utilizes five classically conditioned parasitoid ...
Although the neural and genetic pathways underlying learning and memory formation seem strikingly si...
Although the neural and genetic pathways underlying learning and memory formation seem strikingly si...
Insects are useful model organisms to study learning and memory. Their brains are less complex than ...
Behavioural decisions require the appropriate use of relevant information about the environment. How...
Animals have evolved the capacity to learn, and the conventional view is that learning allows indivi...
The Journal of Experimental Biology Circadian rhythms in social insects are highly plastic and are m...