Morbus Charcot-Marie-Tooth (German Wikipedia)

Analysis of information sources in references of the Wikipedia article "Morbus Charcot-Marie-Tooth" in German language version.

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doi.org

  • M. de Freitas, C. Vidal, J. C. Dias, C. Bittar, T. Escada: Calf hypertrophy in charcot-marie-tooth disease: report of nine cases. In: Journal of the Neurological Sciences. Band 357, 15. Oktober 2015, ISSN 0022-510X, S. e332, doi:10.1016/j.jns.2015.08.1183, PMID 26344562.
  • Toshiki Kobayashi, Aaron K.L. Leung, Yasushi Akazawa, Stephen W. Hutchins: The effect of varying the plantarflexion resistance of an ankle-foot orthosis on knee joint kinematics in patients with stroke. In: Gait & Posture. Band 37, Nr. 3, März 2013, ISSN 0966-6362, S. 457–459, doi:10.1016/j.gaitpost.2012.07.028 (sciencedirect.com [abgerufen am 12. Juli 2021]).
  • P. Meyns, Y.L. Kerkum, M.A. Brehm, J.G. Becher, A.I. Buizer, J. Harlaar: Ankle foot orthoses in cerebral palsy: Effects of ankle stiffness on trunk kinematics, gait stability and energy cost of walking. In: European Journal of Paediatric Neurology. Band 26, 1. Mai 2020, ISSN 1090-3798, S. 68–74, doi:10.1016/j.ejpn.2020.02.009 (sciencedirect.com [abgerufen am 12. Juli 2021]).
  • The effect of ankle foot orthosis stiffness on trunk movement and walking energy cost in cerebral palsy. In: Gait & Posture. Band 49, 1. September 2016, ISSN 0966-6362, S. 2, doi:10.1016/j.gaitpost.2016.07.070 (sciencedirect.com [abgerufen am 22. Juli 2021]).
  • Hilde E. Ploeger, Niels F. J. Waterval, Frans Nollet, Sicco A. Bus, Merel-Anne Brehm: Stiffness modification of two ankle-foot orthosis types to optimize gait in individuals with non-spastic calf muscle weakness – a proof-of-concept study. In: Journal of Foot and Ankle Research. 2019, doi:10.1186/s13047-019-0348-8.
  • Linda Sawade, Federica Grandi, Marianna Mignanelli, Genaro Patiño-López, Kerstin Klinkert: Rab35-regulated lipid turnover by myotubularins represses mTORC1 activity and controls myelin growth. In: Nature Communications. Band 11, Nr. 2835, 5. Juni 2020, ISSN 2041-1723, doi:10.1038/s41467-020-16696-6.

nih.gov

ncbi.nlm.nih.gov

  • R. A. Mann, J. Missirian: Pathophysiology of Charcot-Marie-Tooth disease. In: Clinical orthopaedics and related research. Nummer 234, September 1988, S. 221–228, PMID 3409580.
  • M. de Freitas, C. Vidal, J. C. Dias, C. Bittar, T. Escada: Calf hypertrophy in charcot-marie-tooth disease: report of nine cases. In: Journal of the Neurological Sciences. Band 357, 15. Oktober 2015, ISSN 0022-510X, S. e332, doi:10.1016/j.jns.2015.08.1183, PMID 26344562.
  • Yvette L. Kerkum, Annemieke I. Buizer, Josien C. van den Noort, Jules G. Becher, Jaap Harlaar, Merel-Anne Brehm: The Effects of Varying Ankle Foot Orthosis Stiffness on Gait in Children with Spastic Cerebral Palsy Who Walk with Excessive Knee Flexion. In: PLOS ONE. 23. November 2015, PMID 26600039.

sciencedirect.com

  • Toshiki Kobayashi, Aaron K.L. Leung, Yasushi Akazawa, Stephen W. Hutchins: The effect of varying the plantarflexion resistance of an ankle-foot orthosis on knee joint kinematics in patients with stroke. In: Gait & Posture. Band 37, Nr. 3, März 2013, ISSN 0966-6362, S. 457–459, doi:10.1016/j.gaitpost.2012.07.028 (sciencedirect.com [abgerufen am 12. Juli 2021]).
  • P. Meyns, Y.L. Kerkum, M.A. Brehm, J.G. Becher, A.I. Buizer, J. Harlaar: Ankle foot orthoses in cerebral palsy: Effects of ankle stiffness on trunk kinematics, gait stability and energy cost of walking. In: European Journal of Paediatric Neurology. Band 26, 1. Mai 2020, ISSN 1090-3798, S. 68–74, doi:10.1016/j.ejpn.2020.02.009 (sciencedirect.com [abgerufen am 12. Juli 2021]).
  • The effect of ankle foot orthosis stiffness on trunk movement and walking energy cost in cerebral palsy. In: Gait & Posture. Band 49, 1. September 2016, ISSN 0966-6362, S. 2, doi:10.1016/j.gaitpost.2016.07.070 (sciencedirect.com [abgerufen am 22. Juli 2021]).

zdb-katalog.de

  • M. de Freitas, C. Vidal, J. C. Dias, C. Bittar, T. Escada: Calf hypertrophy in charcot-marie-tooth disease: report of nine cases. In: Journal of the Neurological Sciences. Band 357, 15. Oktober 2015, ISSN 0022-510X, S. e332, doi:10.1016/j.jns.2015.08.1183, PMID 26344562.
  • Toshiki Kobayashi, Aaron K.L. Leung, Yasushi Akazawa, Stephen W. Hutchins: The effect of varying the plantarflexion resistance of an ankle-foot orthosis on knee joint kinematics in patients with stroke. In: Gait & Posture. Band 37, Nr. 3, März 2013, ISSN 0966-6362, S. 457–459, doi:10.1016/j.gaitpost.2012.07.028 (sciencedirect.com [abgerufen am 12. Juli 2021]).
  • P. Meyns, Y.L. Kerkum, M.A. Brehm, J.G. Becher, A.I. Buizer, J. Harlaar: Ankle foot orthoses in cerebral palsy: Effects of ankle stiffness on trunk kinematics, gait stability and energy cost of walking. In: European Journal of Paediatric Neurology. Band 26, 1. Mai 2020, ISSN 1090-3798, S. 68–74, doi:10.1016/j.ejpn.2020.02.009 (sciencedirect.com [abgerufen am 12. Juli 2021]).
  • The effect of ankle foot orthosis stiffness on trunk movement and walking energy cost in cerebral palsy. In: Gait & Posture. Band 49, 1. September 2016, ISSN 0966-6362, S. 2, doi:10.1016/j.gaitpost.2016.07.070 (sciencedirect.com [abgerufen am 22. Juli 2021]).
  • Linda Sawade, Federica Grandi, Marianna Mignanelli, Genaro Patiño-López, Kerstin Klinkert: Rab35-regulated lipid turnover by myotubularins represses mTORC1 activity and controls myelin growth. In: Nature Communications. Band 11, Nr. 2835, 5. Juni 2020, ISSN 2041-1723, doi:10.1038/s41467-020-16696-6.