home.social

#bioinspiration — Public Fediverse posts

Live and recent posts from across the Fediverse tagged #bioinspiration, aggregated by home.social.

fetched live
  1. 🦗 Could insect ears inspire the future of acoustic technology?

    🔗 Comparative Analysis of Morphological and Acoustic Correlates of Bush-Cricket Tympanic Membranes. Computational and Structural Biotechnology Journal (CSBJ). DOI: doi.org/10.34133/csbj.0035

    📚 CSBJ - A Science Partner Journal: spj.science.org/journal/csbj

    #Bioinspiration #Biomimetics #Acoustics #Bioacoustics #EvolutionaryBiology #Biosensors #Entomology #Neuroscience

  2. 🦗 Could insect ears inspire the future of acoustic technology?

    🔗 Comparative Analysis of Morphological and Acoustic Correlates of Bush-Cricket Tympanic Membranes. Computational and Structural Biotechnology Journal (CSBJ). DOI: doi.org/10.34133/csbj.0035

    📚 CSBJ - A Science Partner Journal: spj.science.org/journal/csbj

    #Bioinspiration #Biomimetics #Acoustics #Bioacoustics #EvolutionaryBiology #Biosensors #Entomology #Neuroscience

  3. 🦗 Could insect ears inspire the future of acoustic technology?

    🔗 Comparative Analysis of Morphological and Acoustic Correlates of Bush-Cricket Tympanic Membranes. Computational and Structural Biotechnology Journal (CSBJ). DOI: doi.org/10.34133/csbj.0035

    📚 CSBJ - A Science Partner Journal: spj.science.org/journal/csbj

    #Bioinspiration #Biomimetics #Acoustics #Bioacoustics #EvolutionaryBiology #Biosensors #Entomology #Neuroscience

  4. 🦗 Could insect ears inspire the future of acoustic technology?

    🔗 Comparative Analysis of Morphological and Acoustic Correlates of Bush-Cricket Tympanic Membranes. Computational and Structural Biotechnology Journal (CSBJ). DOI: doi.org/10.34133/csbj.0035

    📚 CSBJ - A Science Partner Journal: spj.science.org/journal/csbj

    #Bioinspiration #Biomimetics #Acoustics #Bioacoustics #EvolutionaryBiology #Biosensors #Entomology #Neuroscience

  5. New on Entomology Today: They look like microscopic soccer balls, but they give leafhopper insects a highly water-repellent, anti-reflective coating. Get a closer look at brochosomes and the latest research into how their properties could one day be emulated in human-made materials. #entomology #insects #bioinspiration entomologytoday.org/2024/02/22

  6. New on Entomology Today: They look like microscopic soccer balls, but they give leafhopper insects a highly water-repellent, anti-reflective coating. Get a closer look at brochosomes and the latest research into how their properties could one day be emulated in human-made materials. #entomology #insects #bioinspiration entomologytoday.org/2024/02/22

  7. New on Entomology Today: They look like microscopic soccer balls, but they give leafhopper insects a highly water-repellent, anti-reflective coating. Get a closer look at brochosomes and the latest research into how their properties could one day be emulated in human-made materials. #entomology #insects #bioinspiration entomologytoday.org/2024/02/22

  8. Hi! I am an associate professor at #templeuniversity in #philadelphia studying how #lizards and other beasties (including #spiders and #SpottedLanternflies) move, fall, trip, and otherwise get around. I currently spend a lot of time getting my mind blown by #GranularPhysics because why, really, is running on #sand so hard? Interests: #biomechanics, #biomimetics, #bioinspiration, #robotics, #CuteAnimals, among other things! #introduction

  9. Hi! I am an associate professor at #templeuniversity in #philadelphia studying how #lizards and other beasties (including #spiders and #SpottedLanternflies) move, fall, trip, and otherwise get around. I currently spend a lot of time getting my mind blown by #GranularPhysics because why, really, is running on #sand so hard? Interests: #biomechanics, #biomimetics, #bioinspiration, #robotics, #CuteAnimals, among other things! #introduction

  10. Hi! I am an associate professor at #templeuniversity in #philadelphia studying how #lizards and other beasties (including #spiders and #SpottedLanternflies) move, fall, trip, and otherwise get around. I currently spend a lot of time getting my mind blown by #GranularPhysics because why, really, is running on #sand so hard? Interests: #biomechanics, #biomimetics, #bioinspiration, #robotics, #CuteAnimals, among other things! #introduction

  11. Hi! I am an associate professor at #templeuniversity in #philadelphia studying how #lizards and other beasties (including #spiders and #SpottedLanternflies) move, fall, trip, and otherwise get around. I currently spend a lot of time getting my mind blown by #GranularPhysics because why, really, is running on #sand so hard? Interests: #biomechanics, #biomimetics, #bioinspiration, #robotics, #CuteAnimals, among other things! #introduction

  12. Forscher hatten zu einem Wettbewerb aufgerufen: gesucht wurden Ideen für bio-inspirierte Roboter, die der Welt helfen könnten.
    Roboterfisch sammelt Mikroplastik aus Gewässern
  13. Forscher hatten zu einem Wettbewerb aufgerufen: gesucht wurden Ideen für bio-inspirierte Roboter, die der Welt helfen könnten.
    Roboterfisch sammelt Mikroplastik aus Gewässern
  14. Forscher hatten zu einem Wettbewerb aufgerufen: gesucht wurden Ideen für bio-inspirierte Roboter, die der Welt helfen könnten.
    Roboterfisch sammelt Mikroplastik aus Gewässern
  15. Forscher hatten zu einem Wettbewerb aufgerufen: gesucht wurden Ideen für bio-inspirierte Roboter, die der Welt helfen könnten.
    Roboterfisch sammelt Mikroplastik aus Gewässern
  16. Forscher arbeiten am kleinsten Fluggerät der Welt. Das Vorbild dazu fanden sie in der Natur, dort soll es sich auch in umweltfreundliche Endprodukte auflösen.
    Winzig wie Sandkörner: Wie fliegende Mikrochips Umweltdaten sammeln sollen
  17. Forscher arbeiten am kleinsten Fluggerät der Welt. Das Vorbild dazu fanden sie in der Natur, dort soll es sich auch in umweltfreundliche Endprodukte auflösen.
    Winzig wie Sandkörner: Wie fliegende Mikrochips Umweltdaten sammeln sollen
  18. Das Funktionsprinzip der Fangmaske der Libellenlarven und der optische Fluss der Bienen beschäftigt deutsche und niederländische Forschende.
    Bioinspiration: Von Libellen und Bienen lernen
  19. #Bioinspiration and origami-like #wing structure: beetles survive in-flight wing collision by collapsible wings #science #biology #origami #insect #entomology #beetle #flight
    📄 Phan & Park (2020) Mechanisms of collision recovery in flying beetles and flapping-wing robots. Science 370:1214–1219 dx.doi.org/10.1126/science.abd