Foster, J. J. et al. Stellar performance: mechanisms underlying Milky Way orientation in dung beetles. Philosophical Transactions of the Royal Society B: Biological Sciences 372, 20160079 (2017).
el Jundi, B. et al. A Snapshot-Based Mechanism for Celestial Orientation. Current Biology 26, 1456–1462 (2016).
el Jundi, B., Smolka, J., Baird, E., Byrne, M. J. & Dacke, M. Diurnal dung beetles use the intensity gradient and the polarization pattern of the sky for orientation. Journal of Experimental Biology 217, 2422–2429 (2014).
Dacke, M., Baird, E., Byrne, M., Scholtz, C. H. & Warrant, E. J. Dung Beetles Use the Milky Way for Orientation. Current Biology 23, 298–300 (2013).
Schmitz, H. & Bousack, H. Modelling a Historic Oil-Tank Fire Allows an Estimation of the Sensitivity of the Infrared Receptors in Pyrophilous Melanophila Beetles. PLOS ONE 7, e37627 (2012).
Klocke, D., Schmitz, A., Soltner, H., Bousack, H. & Schmitz, H. Infrared receptors in pyrophilous (“fire loving”) insects as model for new un-cooled infrared sensors. Beilstein J. Nanotechnol. 2, 186–197 (2011).
Schmitz, H., Norkus, V., Hess, N. & Bousack, H. The infrared sensilla in the beetle Melanophila acuminata as model for new infrared sensors. in Bioengineered and Bioinspired Systems IV vol. 7365 73650A (International Society for Optics and Photonics, 2009).
Dacke, M., Nilsson, D.-E., Scholtz, C. H., Byrne, M. & Warrant, E. J. Insect orientation to polarized moonlight. Nature 424, 33–33 (2003).
Schmitz, H. & Bleckmann, H. The photomechanic infrared receptor for the detection of forest fires in the beetle Melanophila acuminata (Coleoptera: Buprestidae). J Comp Physiol A 182, 647–657 (1998).
McCullough, D. G., Werner, R. A. & Neumann, D. Fire and Insects in Northern and Boreal Forest Ecosystems of North America. Annual Review of Entomology 43, 107–127 (1998).
Linsley, G. E. Attraction of Melanophila Beetles by Fire and Smoke. Journal of Economic Entomology 36, 341–342 (1943).