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Bioengineering / Bionics / Disability / Neuroprosthetics / Prosthesis / Traumatic amputation / Amputation / Electromyography / Medicine / Health / Medical equipment


Document Date: 2011-03-07 10:19:15


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City

Richmond / /

Company

Ball / Appendix 2 WorkSafeBC Evidence-Based Practice Group / WorkSafeBC Evidence-Based Practice Group / The Evidence-Based Practice Group / /

Country

West Germany / Sweden / United States / Canada / Australia / United Kingdom / Finland / India / Denmark / /

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Facility

Stn Terminal / Southampton University / Cochrane Library / /

IndustryTerm

appropriate prosthetic device / clinical applications / rehabilitation infrastructure / rehabilitation services / prosthetic devices / myoelectric technology / electric systems / prosthetic device / hybrid electrohydraulic power systems / energy / digital signal processors / insurance coverage / appropriate prosthetic devices / conventional body-powered prosthetic devices / limb prosthetic devices / upper limb prosthetic technology / upper limb prosthetic devices / prosthetic applications / search engines / particular prosthesis product / terminal devices / myoelectric hand technology / health care insurance / microprocessor technology / metal connections / terminal device / expensive technology / /

NaturalFeature

Edward Island / /

Organization

Washington Department of Labor / Southampton University / US Department of Veterans Affairs / /

Person

Otto Bock / Authors Demet Edeer / Craig W. Martin / /

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Position

Executive / representative / Senior Medical Advisor / microprocessor controller / /

ProvinceOrState

Alberta / Northwest Territories / Quebec / New Brunswick / Saskatchewan / Prince Edward Island / Nunavut / Newfoundland / Manitoba / Nova Scotia / Ontario / /

Region

South Wales / /

Technology

upper limb prosthetic technology / merely experimental / myoelectric hand technology / two digital signal processors / microprocessor technology / 1970s.51-53 Myoelectric prostheses Myoelectric technology / /

URL

http /

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