An Advanced Hardware Platform for Modern Hand-Prostheses

Author:

Hegen Peter,Buchenrieder Klaus

Publisher

Springer International Publishing

Reference11 articles.

1. Attenberger, A., Buchenrieder, K.: Modeling and visualization of classification-based control schemes for upper limb prostheses. In: 2012 IEEE 19th International Conference and Workshops on Engineering of Computer-Based Systems, pp. 188–194, April 2012. https://doi.org/10.1109/ECBS.2012.32

2. Herrmann, S., Buchenrieder, K.: Fusion of myoelectric and near-infrared signals for prostheses control. In: Proceedings of the 4th International Convention on Rehabilitation Engineering & Assistive Technology, iCREATe 2010, pp. 54:154:4. Singapore Therapeutic, Assistive & Rehabilitative Technologies (START) Centre, Kaki Bukit TechPark II, Singapore (2010)

3. Krausz, N.E., Rorrer, R.A.L., Weir, R.F.ff.: Design and fabrication of a six degree-of-freedom open source hand. IEEE Trans. Neural Syst. Rehabil. Eng. 24(5), 562–572 (2016). https://doi.org/10.1109/TNSRE.2015.2440177

4. McGimpsey, G., Bradford, T.C.: Limb prosthetics services and devices - critical unmet need: market analysis. White Paper, Bioengineering Institute Center for Neuroprosthetics, Worcester Polytechnic Institute, Worcester (2008)

5. McLean, L., Scott, R.N.: The early history of myoelectric control of prosthetic limbs (1945–1970). In: Muzumdar, A. (ed.) Powered Upper Limb Prostheses - Control, Implementation and Clinical Application, pp. 1–15. Springer, Heidelberg (2004). https://doi.org/10.1007/978-3-642-18812-1_1

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