Ekso Bionics (original) (raw)

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Ekso Bionics Holdings Inc. is a company that develops and manufactures powered exoskeleton bionic devices that can be strapped on as wearable robots to enhance the strength, mobility, and endurance of industrial workers and people experiencing paralysis and mobility issues after a brain injury, stroke, or spinal cord injury. These robots have a variety of applications in the medical, military, industrial, and consumer markets. It enables individuals with any amount of lower extremity weakness, including those who are paralyzed, to stand up and walk.

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dbo:abstract Ekso Bionics Holdings Inc. is a company that develops and manufactures powered exoskeleton bionic devices that can be strapped on as wearable robots to enhance the strength, mobility, and endurance of industrial workers and people experiencing paralysis and mobility issues after a brain injury, stroke, or spinal cord injury. These robots have a variety of applications in the medical, military, industrial, and consumer markets. It enables individuals with any amount of lower extremity weakness, including those who are paralyzed, to stand up and walk. The company's first commercially available product was called EksoGT (formerly eLEGS). Ekso Bionics is the original developer of HULC, now under military development by Lockheed Martin, and the current developers of EksoNR, which allows wheelchair users and those experiencing gait issues to stand and walk. Ekso was selected as Wired magazine's number two "Most Significant Gadget of 2010", and was included in Time magazine's "50 Best Innovations of 2010". Ekso Bionics was also featured in Inc. magazine as one of "5 Big Ideas for the Next 15 Years". (en)
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dbo:wikiPageExternalLink http://www.robotspodcast.com/podcast/2014/07/robots-ekso-bionics/ http://yourlife.usatoday.com/health/story/2012-01-06/Robotic-devices-help-paralyzed-become-more-independent/52410820/1 https://eksobionics.com/ http://www.cbsnews.com/stories/2011/10/09/sunday/main20117796.shtml%3Ftag=contentBody%3BcbsCarouselCBS https://spectrum.ieee.org/biomedical/bionics/goodbye-wheelchair-hello-exoskeleton http://www.boston.com/news/local/massachusetts/articles/2011/09/15/elegs_device_getting_a_tryout_at_spaulding_rehabilitation_site/%3Fpage=full https://web.archive.org/web/20111112190126/http:/sixtyminutes.ninemsn.com.au/article.aspx%3Fid=8281827 https://web.archive.org/web/20120111232321/http:/www.myfoxdetroit.com/dpp/health/wearable-robot-helps-paralyzed-detroit-firefighter-walk-20120106-ms https://www.wsj.com/articles/SB10001424052970204346104576639063324567764 http://cityroom.blogs.nytimes.com/2011/11/03/walking-again-with-help-from-an-exoskeleton/ http://www.theengineer.co.uk/sectors/medical-and-healthcare/news/us-researchers-create-suit-that-can-enable-paraplegics-to-walk/1010691.article https://www.wired.co.uk/magazine/archive/2012/02/start/step-by-cybernetic-step http://ieet.org/index.php/IEET/more/Munkittrick20120127 http://bleex.me.berkeley.edu/wp-content/uploads/2010/10/elegs.jpg https://www.youtube.com/watch%3Fv=WcM0ruq28dc https://www.youtube.com/watch%3Fv=fEgIJhltrMU https://www.youtube.com/watch%3Fv=jPB6uwc7aWs https://www.youtube.com/watch%3Fv=sZ_FCtRRgBk
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dbp:foundation 2005 (xsd:integer)
dbp:founder Homayoon Kazerooni, Russ Angold, Nathan Harding (en)
dbp:homepage https://eksobionics.com/
dbp:image http://bleex.me.berkeley.edu/wp-content/uploads/2010/10/elegs.jpg
dbp:keyPeople Steven Sherman Scott Davis Jerome Wong (en)
dbp:locationCity dbr:San_Rafael,_California
dbp:locationCountry United States (en)
dbp:logo Ekso logo 3005c small.jpg (en)
dbp:name Ekso Bionics Holdings Inc. (en)
dbp:tradedAs Russell Microcap Index component (en) NASDAQ:EKSO (en)
dbp:type Public (en)
dbp:video Make Me Superhuman Part 1 of 3 National Geographic (en) Paralyzed student, Austin Whitney, walks at graduation YouTube (en) Berkeley Bionics: Introducing eLEGS YouTube (en) Human Universal Load Carrier (HULC) YouTube (en)
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rdfs:comment Ekso Bionics Holdings Inc. is a company that develops and manufactures powered exoskeleton bionic devices that can be strapped on as wearable robots to enhance the strength, mobility, and endurance of industrial workers and people experiencing paralysis and mobility issues after a brain injury, stroke, or spinal cord injury. These robots have a variety of applications in the medical, military, industrial, and consumer markets. It enables individuals with any amount of lower extremity weakness, including those who are paralyzed, to stand up and walk. (en)
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