The MyoRobot technology discloses a premature biomechanical decay of skeletal muscle fiber bundles derived from R349P desminopathy mice:
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Hauptverfasser: | , , , , , , , , , , , , , , , |
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Format: | Elektronisch E-Book |
Sprache: | English |
Veröffentlicht: |
Erlangen ; Nürnberg
Friedrich-Alexander-Universität Erlangen-Nürnberg
2019
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Online-Zugang: | Volltext Volltext Volltext |
Beschreibung: | 1 Online-Ressource |
Internformat
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245 | 1 | 0 | |a The MyoRobot technology discloses a premature biomechanical decay of skeletal muscle fiber bundles derived from R349P desminopathy mice |c Michael Haug, Charlotte Meyer, Barbara Reischl, Gerhard Prölß, Kristina Vetter, Julian Iberl, Stefanie Nübler, Sebastian Schürmann, Stefan J. Rupitsch, Michael Heckel, Thorsten Pöschel, Lilli Winter, Harald Herrmann, Christoph S. Clemen, Rolf Schröder, Oliver Friedrich |
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author | Haug, Michael Meyer, Charlotte Reischl, Barbara Prölß, Gerhard Vetter, Kristina Iberl, Julian Nübler, Stefanie Schürmann, Sebastian Rupitsch, Stefan J. Heckel, Michael Pöschel, Thorsten Winter, Lilli Herrmann, Harald Clemen, Christoph S. Schröder, Rolf Friedrich, Oliver |
author_facet | Haug, Michael Meyer, Charlotte Reischl, Barbara Prölß, Gerhard Vetter, Kristina Iberl, Julian Nübler, Stefanie Schürmann, Sebastian Rupitsch, Stefan J. Heckel, Michael Pöschel, Thorsten Winter, Lilli Herrmann, Harald Clemen, Christoph S. Schröder, Rolf Friedrich, Oliver |
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author_sort | Haug, Michael |
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spelling | Haug, Michael Verfasser aut The MyoRobot technology discloses a premature biomechanical decay of skeletal muscle fiber bundles derived from R349P desminopathy mice Michael Haug, Charlotte Meyer, Barbara Reischl, Gerhard Prölß, Kristina Vetter, Julian Iberl, Stefanie Nübler, Sebastian Schürmann, Stefan J. Rupitsch, Michael Heckel, Thorsten Pöschel, Lilli Winter, Harald Herrmann, Christoph S. Clemen, Rolf Schröder, Oliver Friedrich Erlangen ; Nürnberg Friedrich-Alexander-Universität Erlangen-Nürnberg 2019 1 Online-Ressource txt rdacontent c rdamedia cr rdacarrier Archivierung/Langzeitarchivierung gewährleistet DE-101 pdager Ageing Biomedical engineering Meyer, Charlotte Verfasser aut Reischl, Barbara Verfasser aut Prölß, Gerhard Verfasser aut Vetter, Kristina Verfasser aut Iberl, Julian Verfasser aut Nübler, Stefanie Verfasser aut Schürmann, Sebastian Verfasser aut Rupitsch, Stefan J. Verfasser aut Heckel, Michael Verfasser aut Pöschel, Thorsten Verfasser aut Winter, Lilli Verfasser aut Herrmann, Harald Verfasser aut Clemen, Christoph S. Verfasser aut Schröder, Rolf Verfasser aut Friedrich, Oliver Verfasser aut Sonderdruck aus Scientific Reports Vol. 9 (2019) 10.1038/s41598-019-46723-6 https://nbn-resolving.org/urn:nbn:de:bvb:29-opus4-134276 Resolving-System kostenfrei Volltext https://d-nb.info/1207546267/34 Langzeitarchivierung Nationalbibliothek kostenfrei Volltext https://open.fau.de/handle/openfau/13427 Verlag kostenfrei Volltext |
spellingShingle | Haug, Michael Meyer, Charlotte Reischl, Barbara Prölß, Gerhard Vetter, Kristina Iberl, Julian Nübler, Stefanie Schürmann, Sebastian Rupitsch, Stefan J. Heckel, Michael Pöschel, Thorsten Winter, Lilli Herrmann, Harald Clemen, Christoph S. Schröder, Rolf Friedrich, Oliver The MyoRobot technology discloses a premature biomechanical decay of skeletal muscle fiber bundles derived from R349P desminopathy mice |
title | The MyoRobot technology discloses a premature biomechanical decay of skeletal muscle fiber bundles derived from R349P desminopathy mice |
title_auth | The MyoRobot technology discloses a premature biomechanical decay of skeletal muscle fiber bundles derived from R349P desminopathy mice |
title_exact_search | The MyoRobot technology discloses a premature biomechanical decay of skeletal muscle fiber bundles derived from R349P desminopathy mice |
title_exact_search_txtP | The MyoRobot technology discloses a premature biomechanical decay of skeletal muscle fiber bundles derived from R349P desminopathy mice |
title_full | The MyoRobot technology discloses a premature biomechanical decay of skeletal muscle fiber bundles derived from R349P desminopathy mice Michael Haug, Charlotte Meyer, Barbara Reischl, Gerhard Prölß, Kristina Vetter, Julian Iberl, Stefanie Nübler, Sebastian Schürmann, Stefan J. Rupitsch, Michael Heckel, Thorsten Pöschel, Lilli Winter, Harald Herrmann, Christoph S. Clemen, Rolf Schröder, Oliver Friedrich |
title_fullStr | The MyoRobot technology discloses a premature biomechanical decay of skeletal muscle fiber bundles derived from R349P desminopathy mice Michael Haug, Charlotte Meyer, Barbara Reischl, Gerhard Prölß, Kristina Vetter, Julian Iberl, Stefanie Nübler, Sebastian Schürmann, Stefan J. Rupitsch, Michael Heckel, Thorsten Pöschel, Lilli Winter, Harald Herrmann, Christoph S. Clemen, Rolf Schröder, Oliver Friedrich |
title_full_unstemmed | The MyoRobot technology discloses a premature biomechanical decay of skeletal muscle fiber bundles derived from R349P desminopathy mice Michael Haug, Charlotte Meyer, Barbara Reischl, Gerhard Prölß, Kristina Vetter, Julian Iberl, Stefanie Nübler, Sebastian Schürmann, Stefan J. Rupitsch, Michael Heckel, Thorsten Pöschel, Lilli Winter, Harald Herrmann, Christoph S. Clemen, Rolf Schröder, Oliver Friedrich |
title_short | The MyoRobot technology discloses a premature biomechanical decay of skeletal muscle fiber bundles derived from R349P desminopathy mice |
title_sort | the myorobot technology discloses a premature biomechanical decay of skeletal muscle fiber bundles derived from r349p desminopathy mice |
url | https://nbn-resolving.org/urn:nbn:de:bvb:29-opus4-134276 https://d-nb.info/1207546267/34 https://open.fau.de/handle/openfau/13427 |
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