Dimensional accuracy of ankle-foot orthoses constructed by rapid customization and manufacturing framework.
暂无分享,去创建一个
[1] M. Brault,et al. Americans With Disabilities: 2005 , 2008 .
[2] Kaat Desloovere,et al. How can push-off be preserved during use of an ankle foot orthosis in children with hemiplegia? A prospective controlled study. , 2006, Gait & posture.
[3] B. Pomeranz,et al. Prosthetics and orthotics for the older adult with a physical disability. , 2006, Clinics in geriatric medicine.
[4] Robert A. Bedotto,et al. Biomechanical assessment and treatment in lower extremity prosthetics and orthotics: a clinical perspective. , 2006, Physical medicine and rehabilitation clinics of North America.
[5] E Berry,et al. Preliminary experience with medical applications of rapid prototyping by selective laser sintering. , 1997, Medical engineering & physics.
[6] Kenneth W. Dalgarno,et al. Mass Customization of Foot Orthoses for Rheumatoid Arthritis Using Selective Laser Sintering , 2010, IEEE Transactions on Biomedical Engineering.
[7] F. Zajac,et al. Contributions of the individual ankle plantar flexors to support, forward progression and swing initiation during walking. , 2001, Journal of biomechanics.
[8] Donald Freeman,et al. Stereolithography and Prosthetic Test Socket Manufacture: A Cost/Benefit Analysis , 1998 .
[9] Richard R Neptune,et al. Manufacture of energy storage and return prosthetic feet using selective laser sintering. , 2010, Journal of biomechanical engineering.
[10] Peter K. L. Ng,et al. Prosthetic sockets fabrication using rapid prototyping technology , 2002 .
[11] Elena M Gutierrez-Farewik,et al. A new carbon fibre spring orthosis for children with plantarflexor weakness. , 2007, Gait & posture.
[12] T. Kepple,et al. Relative contributions of the lower extremity joint moments to forward progression and support during gait , 1997 .
[13] D. Condie,et al. The modern era of orthotics , 2008, Prosthetics and orthotics international.
[14] Wei Sun,et al. Orthotic design through 3D reconstruction: A passive-assistance ankle--foot orthotic , 2006 .
[15] Pulak M. Pandey,et al. Influence of building strategies on the accuracy of parts in selective laser sintering , 2009 .
[16] Richard H. Crawford,et al. Manufacture of Passive Dynamic Ankle–Foot Orthoses Using Selective Laser Sintering , 2008, IEEE Transactions on Biomedical Engineering.
[17] R.R. Neptune,et al. An Experimental and Theoretical Framework for Manufacturing Prosthetic Sockets for Transtibial Amputees , 2006, IEEE Transactions on Neural Systems and Rehabilitation Engineering.
[18] K. Kaufman,et al. Stiffness of the Arizona Ankle-Foot Orthosis Before and After Modification for Gait Analysis , 2009 .
[19] G. Doxey,et al. Clinical use and fabrication of molded thermoplastic foot orthotic devices. Suggestion from the field. , 1985, Physical therapy.
[20] Mario C Faustini,et al. Advanced Trans-Tibial Socket Fabrication Using Selective Laser Sintering , 2007, Prosthetics and orthotics international.
[21] Steven A. Kautz,et al. Stepping with an ankle foot orthosis re-examined: a mechanical perspective for clinical decision making. , 2010, Clinical biomechanics.
[22] Zsófia Osváth,et al. DOI: 10 , 2011 .
[23] Jorge Vicente Lopes da Silva,et al. Dimensional error in selective laser sintering and 3D-printing of models for craniomaxillary anatomy reconstruction. , 2008, Journal of cranio-maxillo-facial surgery : official publication of the European Association for Cranio-Maxillo-Facial Surgery.
[24] D. Silva,et al. Dimensional error of selective laser sintering, three-dimensional printing and PolyJet models in the reproduction of mandibular anatomy. , 2009, Journal of cranio-maxillo-facial surgery : official publication of the European Association for Cranio-Maxillo-Facial Surgery.
[25] R S Ross,et al. A three centre study of the variability of ankle foot orthoses due to fabrication and grade of polypropylene , 2004, Prosthetics and orthotics international.