Another way of orienting oneself in space is by relying on landmarks in the environment, such as tall buildings in a big city. “Our findings suggest this is the most likely possibility, and it fits with the need to get to know a new environment over several days,” Ulanovsky says. “Every natural environment is full of landmarks that can be seen, smelled or heard. Latham Island’s topography included cliffs and large boulders that could serve as navigation cues. In fruit bats, sight is the dominant sense and has the longest range, so we assume they mainly rely on vision. Unlike navigation based on magnetic fields, a system that depends on learning landmarks requires complex neural computations, partly because only some of the landmarks are visible from any given point. That’s precisely why using this system takes several days of learning – or in fact, several nights.”
Could bats, like humans and other animals, also look upward and navigate using the Sun, the Moon and the stars? Celestial bodies are unstable cues – they appear, move and then disappear – so using them for navigation is complicated. Laboratory studies had previously shown that moving objects resembling celestial bodies can affect the activity of head-direction cells in mammalian brains, but when the researchers recorded the activity of these cells in bats flying in the wild before and after moonrise, they detected no change. Likewise, the bats’ internal compass remained stable and accurate regardless of whether the Moon and stars were visible or hidden by clouds.
“We found that the Moon and stars are not essential for bats to navigate,” says Ulanovsky. “Still, it’s possible that their compass integrates celestial cues with local landmarks. The angle of celestial bodies relative to an animal does not depend on its exact location, so these bodies can serve to calibrate the compass. For example, on their first night in a new environment like Latham Island, bats could compare the position of landmarks with that of celestial bodies supplying an ‘absolute truth’ – which would greatly speed up learning and stabilize the compass.”