Recent developments and challenges of lower extremity exoskeletons

Author:

Chen Bing,Ma Hao,Qin Lai-Yin,Gao Fei,Chan Kai-Ming,Law Sheung-Wai,Qin Ling,Liao Wei-Hsin

Funder

Lui Che Woo Foundation Limited

Innovation and Technology Commission of Hong Kong Special Administrative Region, Hong Kong, China

Publisher

Elsevier BV

Subject

Orthopedics and Sports Medicine

Reference72 articles.

1. United Nations Population Fund (UNFPA). UNFPA report: setting the scene. Chapter 1. Available at: http://www.unfpa.org/webdav/site/global/shared/documents/publications/2012/UNFPA-Report-Chapter1.pdf. [accessed 04.10.15].

2. Age-associated decrease of type IIA/B human skeletal muscle fibers;Lee;Clin Orthop Relat Res,2006

3. Type IIB Human skeletal muscle fibers positively correlate with bone mineral density irrespective to age;Cheung;Chin Med J Engl,2010

4. Virtual interactive musculoskeletal system (VIMS) in orthopaedic translational research (review);Chao;J Orthop Transl,2013

5. Atrial fibrillation as an independent risk factor for stroke: the Framingham study;Wolf;Stroke,1991

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