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  <title>From the archive: Electric ecology</title>
  <description>Hi friends! We're still taking a bit of a summer pause. We'll be back at the end of August—in the meanwhile, enjoy this listener favorite from our archives! ----- [originally aired September 19, 2024] There's a bit of a buzz out there, right now, but maybe you haven’t noticed. It's in the water, it's in the air. It's electricity—and it's all around us, all the time, including in some places you might not have expected to find it. We humans, after all, are not super tuned in to this layer of reality. But many other creatures are—and scientists are starting to take note. My guest today is&amp;amp;nbsp;Dr. Sam England. Sam is a sensory ecologist at the Natural History Museum in Berlin, and one of a handful of scientists uncovering some shocking things about the role of electricity in the natural world. Here, Sam and I have a wide-ranging conversation about&amp;amp;nbsp;electroreception—which is the perception of electrical stimuli—and&amp;amp;nbsp;electric ecology—which is the study of the ecological roles of electricity. We talk about how an interest in electroreception first got started, and why it's recently resurged. We discuss aquatic electroreception versus aerial electroreception, active electroreception versus passive electroreception. We talk about how electroreception is actually kind of easy to evolve. Along the way, we consider electrolocation and, its analog in sound, echolocation. We touch on dolphins, sharks, echidnas, ticks, caterpillars, bees, and spiders. We zoom in on electrostatic pollination, and what is inarguably the coolest sounding anatomical structure known to biology: the ampullae of Lorenzini. I think you'll enjoy this one, friends. As Sam describes here, electroreception is one of those &amp;quot;alien senses&amp;quot;—it really challenges the imagination. And electric ecology is one of those frontiers in our understanding of the natural world. So without further ado, here's my chat with Dr. Sam England. Enjoy! &amp;amp;nbsp; A transcript of this episode is available&amp;amp;nbsp;here. &amp;amp;nbsp; Notes and links 3:00 – For many of the topics discussed in this episode, see this comprehensive&amp;amp;nbsp;recent review&amp;amp;nbsp;of electroreception and electric ecology by Dr. England and a colleague. 7:30 –&amp;amp;nbsp;A&amp;amp;nbsp;paper reviewing&amp;amp;nbsp;the (contested) phenomenon of electromagnetic hypersensitivity in humans. 9:30 –&amp;amp;nbsp;An&amp;amp;nbsp;encyclopedia article&amp;amp;nbsp;on electroreception in monotremes. 13:00 –&amp;amp;nbsp;An&amp;amp;nbsp;early study&amp;amp;nbsp;of electrolocation in “weakly electric” fish. 17:00 – A popular&amp;amp;nbsp;article&amp;amp;nbsp;about the discovery of electroreception in sharks. 20:30 –&amp;amp;nbsp;A&amp;amp;nbsp;2013 study&amp;amp;nbsp;showing that bumblebees detect the electric fields around flowers. 23:30 –&amp;amp;nbsp;A recent&amp;amp;nbsp;review&amp;amp;nbsp;of electroreception and its evolution in fish.&amp;amp;nbsp;&amp;amp;nbsp; 25:00 – A&amp;amp;nbsp;study&amp;amp;nbsp;demonstrating electroreception in the Guiana dolphin. 34:00 –&amp;amp;nbsp;A recent&amp;amp;nbsp;study&amp;amp;nbsp;by Dr. England and colleagues showing that static electricity pulls ticks onto hosts. 43:00 –&amp;amp;nbsp;For more on echolocation, see our&amp;amp;nbsp;earlier episode&amp;amp;nbsp;on bats. 47:00 – A&amp;amp;nbsp;recent paper&amp;amp;nbsp;by Dr. Ryan Palmer, examining the theoretical possibilities of electroreception in air. 52:30 –&amp;amp;nbsp;A (controversial)&amp;amp;nbsp;2022 paper&amp;amp;nbsp;on possibly language-like communication in fungi via electricity. 55:00 – Another&amp;amp;nbsp;2013 study&amp;amp;nbsp;on electroreception in bees, this one in honeybees. 56:30 – An animated video&amp;amp;nbsp;describing the role that electricity plays in spider ballooning. 1:00:00 – Dr. England’s&amp;amp;nbsp;recent study&amp;amp;nbsp;showing that caterpillars can detect the electric fields around wasps. 1:03:00 – A&amp;amp;nbsp;discussion&amp;amp;nbsp;of triboelectric effects. 1:11:00 – Dr. England’s&amp;amp;nbsp;recent study&amp;amp;nbsp;of electrostatic pollination in butterflies and moths. 1:19:00 – A&amp;amp;nbsp;study&amp;amp;nbsp;arguing that the sexual organs of flowers may have evolved to take advantage of electrostatic pollination. 1:25:00 ­– For more on spider eyes, see our&amp;amp;nbsp;recent episode&amp;amp;nbsp;all about spiders. &amp;amp;nbsp; Recommendations ‘Electroreception, electrogenesis and electric signal evolution,’ William Crampton  An Immense World,&amp;amp;nbsp;Ed Yong (a&amp;amp;nbsp;previous guest!) &amp;amp;nbsp; Tile image credit: Francisco Jesús Navarro Hernández via Unsplash &amp;amp;nbsp; Many Minds&amp;amp;nbsp;is a project of the&amp;amp;nbsp;Diverse Intelligences Summer Institute, which is made possible by a generous grant from the John Templeton Foundation to Indiana University. The show is hosted and produced by&amp;amp;nbsp;Kensy Cooperrider, with help from Assistant Producer&amp;amp;nbsp;Urte Laukaityte&amp;amp;nbsp;and with creative support from DISI Directors Erica Cartmill and Jacob Foster. Our artwork is by&amp;amp;nbsp;Ben Oldroyd.&amp;amp;nbsp;Our transcripts are created by&amp;amp;nbsp;Sarah Dopierala. Subscribe to&amp;amp;nbsp;Many Minds&amp;amp;nbsp;on Apple, Stitcher, Spotify, Pocket Casts, Google Play, or wherever you listen to podcasts. You can also now subscribe to the Many Minds newsletter&amp;amp;nbsp;here! We welcome your comments, questions, and suggestions. Feel free to email us at: manymindspodcast@gmail.com.&amp;amp;nbsp; For updates about the show, visit&amp;amp;nbsp;our website&amp;amp;nbsp;or follow us on Twitter (@ManyMindsPod)&amp;amp;nbsp;or Bluesky&amp;amp;nbsp;(@manymindspod.bsky.social). </description>
  <author_name>Many Minds</author_name>
  <author_url>https://disi.org/manyminds/</author_url>
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