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Effect of long-term muscle paralysis on human single fiber mechanics
Laurent Malisoux
, Cécile Jamart
, Krystel Delplace
, Henri Nielens
, Marc Francaux
, Daniel Theisen
*
*
Corresponding author for this work
Research output
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Contribution to journal
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Article
›
Research
›
peer-review
59
Citations (Scopus)
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Dive into the research topics of 'Effect of long-term muscle paralysis on human single fiber mechanics'. Together they form a unique fingerprint.
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Keyphrases
Spinal Cord Injury
100%
Single Fiber
100%
Muscle Paralysis
100%
Fiber Mechanics
100%
All-fiber
50%
Cross-sectional Area
50%
Fiber Type
50%
Peak Power
50%
Human muscle
50%
Peak Force
50%
Neuromuscular Function
50%
Myosin Heavy Chain (MyHC)
25%
Normal Function
25%
Vastus Lateralis
25%
Control Subjects
25%
Contraction Velocity
25%
Shortening Velocity
25%
Fiber Properties
25%
Skinned Fiber
25%
Fibre Characteristics
25%
Able-bodied
25%
Passive Fiber
25%
Mechanical Characteristics
25%
Ca2+ Sensitivity
25%
Contractile Performance
25%
Maximal Voluntary Contraction
25%
Medicine and Dentistry
Paralysis
100%
Spinal Cord Injury
100%
Study Participant
25%
Calcium Ion
25%
Heavy Meromyosin
25%
Biopsy Technique
25%
Albendazole
25%
Agricultural and Biological Sciences
Spinal Cord
100%
Myosin Heavy Chain
25%
Heavy Meromyosin
25%
Calcium Ion
25%
Albendazole
25%