The Treebox is an amazing modern home set high up in the treetops

February 12, 2018 by  
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This gorgeous wooden home in Texas captures the experience of living high up in the treetops. Designed by Wernerfield , the PH2 Treebox is raised several meters off the ground, and its living quarters are sheltered by the surrounding forest. Wernerfield was commissioned to design an addition to an existing split-level house on a wooded property in Dallas. The team responded with a design that takes its cues from the form of the main house. Related: Microsoft unveils amazing treehouse office where employees can brainstorm in fresh air “The existing home’s split-level plan provides an elevated deck at the rear that is wrapped by the forest,” said the architects. “This sensation of being elevated and floating in the forest was carried forward as the central design concept throughout the project.” Related: Aging Portuguese granary transformed into a serene sanctuary in the trees The architects set the home on 12-foot-high metal columns, creating space for a sheltered parking area below. A metal staircase leads up to the dwelling area. The home’s exterior is clad in charred wood , which is both discrete and durable. The interior comprises a guest quarters and an office space (separated by a breezeway), and it has a minimalist, warm material palette that accentuates the connection to the forest. + Wernerfield Via Dezeen Photos by Robert Yu

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The Treebox is an amazing modern home set high up in the treetops

Praying mantises wearing tiny glasses help researchers discover new type of 3D vision

February 12, 2018 by  
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This praying mantis isn’t just wearing minuscule 3D glasses for the cute factor, but to help scientists learn more about 3D vision. A Newcastle University team discovered a novel form of 3D vision, or stereo vision, in the insects – and compared human and insect stereo vision for the very first time. Their findings could have implications for visual processing in robots . Humans aren’t the only creatures with stereo vision, which “helps us work out the distances to the things we see,” according to the university . Cats, horses, monkeys, toads, and owls have it too – but the only insect we know about with 3D vision is the praying mantis. Six Newcastle University researchers obtained new insight into their robust stereo vision with the help of small 3D glasses temporarily attached to the insects with beeswax. Related: Praying mantises hunt down and eat small birds, including hummingbirds The researchers designed an insect 3D cinema, showing a praying mantis a film of prey. The insects would actually try to catch the prey because the illusion was so convincing. And the scientists were able to take their work to the next level, showing the mantises “complex dot-patterns used to investigate human 3D vision” so they could compare our 3D vision with an insect’s for the first time. According to the university, humans see 3D in still images by matching details of the image each eye sees. “But mantises only attack moving prey so their 3D doesn’t need to work in still images. The team found mantises don’t bother about the details of the picture but just look for places where the picture is changing…Even if the scientists made the two eyes’ images completely different, mantises can still match up the places where things are changing. They did so even when humans couldn’t.” The journal Current Biology published their work online last week . Lead author Vivek Nityananda, a behavioral ecologist, described the praying mantis’ stereo vision as “a completely new form of 3D vision.” Future robots could benefit from these findings: instead of 3D vision based on complex human stereo vision, researchers might be able to take some tips from praying mantis stereo vision, which team member Ghaith Tarawneh said probably doesn’t require a lot of computer processing since insect brains are so small. + Newcastle University + Current Biology Images via Newcastle University, UK/Phys.org

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Praying mantises wearing tiny glasses help researchers discover new type of 3D vision

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