Optimal stiffness of a pedicle-screw-based motion preservation implant for the lumbar spine
Author:
Publisher
Springer Science and Business Media LLC
Subject
Orthopedics and Sports Medicine,Surgery
Link
http://link.springer.com/content/pdf/10.1007/s00586-011-2047-4.pdf
Reference21 articles.
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2. Rohlmann A, Nabil Boustani H, Bergmann G, Zander T (2010) Effect of a pedicle-screw-based motion preservation system on lumbar spine biomechanics: a probabilistic finite element study with subsequent sensitivity analysis. J Biomech 43:2963–2969
3. Stoll TM, Dubois G, Schwarzenbach O (2002) The dynamic neutralization system for the spine: a multi-center study of a novel nonfusion system. Eur Spine J 11(Suppl. 2):S170–S178
4. Wilke HJ, Heuer F, Schmidt H (2009) Prospective design delineation and subsequent in vitro evaluation of a new posterior dynamic stabilization system. Spine 34:255–261
5. Schmidt H, Heuer F, Wilke HJ (2009) Which axial and bending stiffnesses of posterior implants are required to design a flexible lumbar stabilization system? J Biomech 42:48–54
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