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Utvenko, G.

Publications and source records attributed to Utvenko, G..

2 recordsLinked to original sources

Birds are easier to trick: an effect of magnetic field manipulation on migratory orientation of Nathusius's pipistrelle in the circular release box

Bats, like birds, are capable of long annual migrations; however, a very limited number of studies are devoted to the role of the Earths magnetic field in bat navigation. We aimed to perform a series of experiments on Nathusius pipistrelle (Pipistrellus nathusii) to ensure that they are able to use the geomagnetic field for orientation. Bats were tested under two different conditions: in the geomagnetic field and the field, rotated 120{degrees} CW. To determine the takeoff direction and analyse behaviour in different magnetic conditions, we used the modified circular release box (CRBox) and a mini camera with IR LEDs. Helmholtz magnetic coils were used to manipulate the magnetic field. Bats were captured during migration through the Curonian spit (Kaliningrad region, Russia). Totally 53 bats were tested during August and September 2021-2022. During the second year, we recorded post-release bats behaviour using a thermal camera. Although results from 2021 are ambiguous, data obtained in 2022 suggests that under given conditions bats, unlike birds, could prefer local audible landmarks and wind direction prior to global cues. However, the recordings of released bats clearly show that they have some specific directional preferences, which correspond to their migratory orientation.

animal behavior and cognition↗

Migratory birds are able to choose the appropriate migratory direction under dim yellow monochromatic light

Previously it has been shown that migratory birds were oriented in the appropriate migratory direction under UV, blue and green monochromatic lights (short-wavelength) and were unable to use their magnetic compass in total darkness and under yellow and red light (long-wavelength). Currently, it is generally assumed that the magnetic compass of birds works correctly only under short-wavelength light. However, it also been suggested that the magnetic compass has two sensitivity peaks: in the short and long wavelengths, but with different intensities. In this project, we aimed to study the orientation of long-distance migrants, pied flycatchers (Ficedula hypoleuca), in different monochromatic lights during autumn migration. The birds were tested in the natural magnetic field (NMF) and 120{degrees} CCW shifted magnetic field (CMF) under green and yellow light (intensity 1 mW m-2). All tests were performed in a specially constructed wooden laboratory equipped with magnetic coils to manipulate the magnetic field. We showed that (1) pied flycatchers were completely disoriented under green light both in the NMF and CMF but (2) showed the migratory direction in NMF and the appropriate response to CMF under yellow light. Our data contradict results of previous experiments under monochromatic yellow light and might indicate the previously proposed hypothesis of two different mechanisms in avian magnetoreception (a high-sensitive short-wavelength mechanism and a low-sensitive mechanism in the long-wavelength spectrum) has a right to exist.

zoology↗