Neural Networks Create a Disturbing Record of Natural History in AI-Generated Illustrations by Sofia Crespo
Sofia Crespo describes her work as the “natural history book that never was.” The Berlin-based artist uses artificial neural networks to generate illustrations that at first glance, resemble Louis Renard’s 18th Century renderings or the exotic specimens of Albertus Seba’s compendium. Upon closer inspection, though, the colorful renderings reveal unsettling combinations: two fish are conjoined with a shared fin, flower petals appear feather-like, and a study of butterflies features insects with missing wings and bizarrely formed bodies.
Titled Artificial Natural History, the ongoing project merges the desire to categorize organisms with “the very renaissance project of humanism,” Crespo says, forming a distorted series of creatures with imagined features that require a new set of biological classifications. “The specimens of the artificial natural history both celebrate and play with the seemingly endless diversity of the natural world, one that we still have very limited comprehension and awareness of,” she writes.
Crespo manufactured a similar project, Neural Zoo, that combines disparate elements of nature into composite organisms. “Our visual cortex recognizes the textures, but the brain is simultaneously aware that those elements don’t belong to any arrangement of reality that it has access to,” she says. More generally, Crespo explains her motivation behind merging artificial neural networks and natural history:
Computer vision and machine learning could offer a bridge between us and a speculative “natures” that can only be accessed through high levels of parallel computation. Starting from the level of our known reality, we could ultimately be digitizing cognitive processes and utilizing them to feed new inputs into the biological world, which feeds back into a cycle. Routines in artificial neural networks become a tool for creation, one that allows for new experiences of the familiar. Can art be reduced to the remapping of data absorbed through sensory processes?
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