Auflistung Fakultät für Maschinenbau nach Autor/in "4cd37190-194b-46f4-a59f-f6121ea7e075"

Auflistung Fakultät für Maschinenbau nach Autor/in "4cd37190-194b-46f4-a59f-f6121ea7e075"

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  • Weizbauer, Andreas; Modrejewski, Christian; Behrens, Sabine; Klein, Helmut; Helmecke, Patrick; Seitz, Jan-Marten; Windhagen, Henning; Möhwald, Kai; Reifenrath, Janin; Waizy, Hazibullah (London : SAGE Publications Ltd., 2014)
    In this in vitro study, magnesium plates of ZEK100 and MgCa0.8 alloy similar to common titanium alloy osteosynthesis plates were investigated as degradable biomedical materials with a focus on primary stability. Immersion ...
  • Erdmann, Nina; Bondarenko, Alexandr; Hewicker-Trautwein, Marion; Angrisani, Nina; Reifenrath, Janin; Lucas, Arne; Meyer-Lindenberg, Andrea (London : BioMed Central Ltd., 2010)
    Background: Recent studies have shown the potential suitability of magnesium alloys as biodegradable implants. The aim of the present study was to compare the soft tissue biocompatibility of MgCa0.8 and commonly used ...
  • Gniesmer, Sarah; Brehm, Ralph; Hoffmann, Andrea; de Cassan, Dominik; Menzel, Henning; Hoheisel, Anna-Lena; Glasmacher, Birgit; Willbold, Elmar; Reifenrath, Janin; Wellmann, Mathias; Ludwig, Nils; Tavassol, Frank; Zimmerer, Rüdiger; Gellrich, Nils-Claudius; Kampmann, Andreas (Chichester : John Wiley and Sons Ltd, 2019)
    In orthopaedic medicine, connective tissues are often affected by traumatic or degenerative injuries, and surgical intervention is required. Rotator cuff tears are a common cause of shoulder pain and disability among adults. ...
  • Huehnerschulte, Tim Andreas; Reifenrath, Janin; Rechenberg, Brigitte von; Dziuba, Dina; Seitz, Jan-Marten; Bormann, Dirk; Windhagen, Henning; Meyer-Lindenberg, Andrea (London : BioMed Central Ltd, 2012)
    Background: Most studies on biodegradable magnesium implants published recently use magnesium-calcium-alloys or magnesium-aluminum-rare earth-alloys. However, since rare earths are a mixture of elements and their toxicity ...
  • Ullmann, Berit; Reifenrath, Janin; Dziuba, Dina; Seitz, Jan-Marten; Bormann, Dirk; Meyer-Lindenberg, Andrea (Basel : MDPI AG, 2011)
    In former studies the magnesium alloy LAE442 showed promising in vivo degradation behavior and biocompatibility. However, reproducibility might be enhanced by replacement of the rare earth composition metal "E" by only a ...
  • Bracht, Katja; Angrisani, Nina; Seitz, Jan-Marten; Eifler, Rainer; Weizbauer, Andreas; Reifenrath, Janin (London : BioMed Central Ltd., 2015)
    Background: Magnesium alloys are recommended as a potential material for osteosynthesis. It is known that storage-induced property modifications can occur in materials like aluminum. Thus the aim of this study was to analyze ...
  • Denkena, Berend; Köhler, Jens; Stieghorst, J.; Turger, Anke; Seitz, J.; Fau, D.R.; Wolters, L.; Angrisani, Nina; Reifenrath, Janin; Helmecke, Patrick (Amsterdam : Elsevier, 2013)
    In this paper the performance of a magnesium based implant system is analyzed. A special emphasis is placed on the impact of stress on the corrosion behavior of the magnesium alloy. An implant system containing a plate and ...
  • Ullmann, Berit; Reifenrath, Janin; Seitz, Jan-Martin; Bormann, Dirk; Meyer-Lindenberg, Andrea (London : SAGE Publications Ltd., 2013)
    The aim of this study was to investigate the differences in the in vivo degradation behaviour of magnesium implants with various grain sizes and damaged surfaces. For this purpose, three different LAE442 magnesium implants ...
  • Gniesmer, Sarah; Brehm, Ralph; Hoffmann, Andrea; de Cassan, Dominik; Menzel, Henning; Hoheisel, Anna Lena; Glasmacher, Birgit; Willbold, Elmar; Reifenrath, Janin; Ludwig, Nils; Zimmerer, Rüdiger; Tavassol, Frank; Gellrich, Nils-Claudius; Kampmann, Andreas (San Francisco, CA : Public Library of Science (PLoS), 2020)
    Rotator cuff tear is the most frequent tendon injury in the adult population. Despite current improvements in surgical techniques and the development of grafts, failure rates following tendon reconstruction remain high. ...

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