Redox Balance Differentially Affects Biomechanics in Permeabilized Single Muscle Fibres—Active and Passive Force Assessments with the Myorobot:
Gespeichert in:
Hauptverfasser: | , , , , , |
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Format: | Elektronisch E-Book |
Sprache: | English |
Veröffentlicht: |
Erlangen ; Nürnberg
Friedrich-Alexander-Universität Erlangen-Nürnberg
2022
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Schlagworte: | |
Online-Zugang: | Volltext Volltext Volltext |
Beschreibung: | 1 Online-Ressource |
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spelling | Michael, Mena Verfasser aut Redox Balance Differentially Affects Biomechanics in Permeabilized Single Muscle Fibres—Active and Passive Force Assessments with the Myorobot Mena Michael, Larisa Kovbasyuk, Paul Ritter, Michael B. Reid, Oliver Friedrich, Michael Haug Erlangen ; Nürnberg Friedrich-Alexander-Universität Erlangen-Nürnberg 2022 1 Online-Ressource txt rdacontent c rdamedia cr rdacarrier Archivierung/Langzeitarchivierung gewährleistet DE-101 pdager redox balance single muscle fibre calcium sensitivity passive stiffness Kovbasyuk, Larisa Verfasser aut Ritter, Paul Verfasser aut Reid, Michael B. Verfasser aut Friedrich, Oliver Verfasser aut Haug, Michael Verfasser aut Sonderdruck aus Cells Vol. 11.23 (2022), 3715 10.3390/cells11233715 https://nbn-resolving.org/urn:nbn:de:bvb:29-opus4-210686 Resolving-System kostenfrei Volltext https://d-nb.info/1275712010/34 Langzeitarchivierung Nationalbibliothek kostenfrei Volltext application/pdf https://open.fau.de/handle/openfau/21068 Verlag kostenfrei Volltext 1\p emakn 0,08703 20221217 DE-101 https://d-nb.info/provenance/plan#emakn 2\p emasg 0,57336 20221217 DE-101 https://d-nb.info/provenance/plan#emasg 3\p npi 20221216 DE-101 https://d-nb.info/provenance/plan#npi |
spellingShingle | Michael, Mena Kovbasyuk, Larisa Ritter, Paul Reid, Michael B. Friedrich, Oliver Haug, Michael Redox Balance Differentially Affects Biomechanics in Permeabilized Single Muscle Fibres—Active and Passive Force Assessments with the Myorobot |
title | Redox Balance Differentially Affects Biomechanics in Permeabilized Single Muscle Fibres—Active and Passive Force Assessments with the Myorobot |
title_auth | Redox Balance Differentially Affects Biomechanics in Permeabilized Single Muscle Fibres—Active and Passive Force Assessments with the Myorobot |
title_exact_search | Redox Balance Differentially Affects Biomechanics in Permeabilized Single Muscle Fibres—Active and Passive Force Assessments with the Myorobot |
title_exact_search_txtP | Redox Balance Differentially Affects Biomechanics in Permeabilized Single Muscle Fibres—Active and Passive Force Assessments with the Myorobot |
title_full | Redox Balance Differentially Affects Biomechanics in Permeabilized Single Muscle Fibres—Active and Passive Force Assessments with the Myorobot Mena Michael, Larisa Kovbasyuk, Paul Ritter, Michael B. Reid, Oliver Friedrich, Michael Haug |
title_fullStr | Redox Balance Differentially Affects Biomechanics in Permeabilized Single Muscle Fibres—Active and Passive Force Assessments with the Myorobot Mena Michael, Larisa Kovbasyuk, Paul Ritter, Michael B. Reid, Oliver Friedrich, Michael Haug |
title_full_unstemmed | Redox Balance Differentially Affects Biomechanics in Permeabilized Single Muscle Fibres—Active and Passive Force Assessments with the Myorobot Mena Michael, Larisa Kovbasyuk, Paul Ritter, Michael B. Reid, Oliver Friedrich, Michael Haug |
title_short | Redox Balance Differentially Affects Biomechanics in Permeabilized Single Muscle Fibres—Active and Passive Force Assessments with the Myorobot |
title_sort | redox balance differentially affects biomechanics in permeabilized single muscle fibres active and passive force assessments with the myorobot |
url | https://nbn-resolving.org/urn:nbn:de:bvb:29-opus4-210686 https://d-nb.info/1275712010/34 https://open.fau.de/handle/openfau/21068 |
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