New Results
Rectus femoris hyperreflexia predicts knee flexion angle in Stiff-Knee gait after stroke
View ORCID ProfileTunc Akbas, Kyoungsoon Kim, Kathleen Doyle, Kathleen Manella, Robert Lee, Patrick Spicer, Maria Knikou, View ORCID ProfileJames Sulzer
doi: https://doi.org/10.1101/699108
Tunc Akbas
1Walker Department of Mechanical Engineering, University of Texas at Austin
Kyoungsoon Kim
1Walker Department of Mechanical Engineering, University of Texas at Austin
Kathleen Doyle
1Walker Department of Mechanical Engineering, University of Texas at Austin
Kathleen Manella
2University of St. Augustine for Health Sciences
Robert Lee
3St. David’s Medical Center
Patrick Spicer
4Dell Medical School, University of Texas at Austin
Maria Knikou
5Graduate Center of the City University of New York
James Sulzer
1Walker Department of Mechanical Engineering, University of Texas at Austin

Article usage
Posted July 14, 2019.
Rectus femoris hyperreflexia predicts knee flexion angle in Stiff-Knee gait after stroke
Tunc Akbas, Kyoungsoon Kim, Kathleen Doyle, Kathleen Manella, Robert Lee, Patrick Spicer, Maria Knikou, James Sulzer
bioRxiv 699108; doi: https://doi.org/10.1101/699108
Subject Area
Subject Areas
- Biochemistry (5278)
- Bioengineering (3691)
- Bioinformatics (15820)
- Biophysics (7272)
- Cancer Biology (5633)
- Cell Biology (8113)
- Clinical Trials (138)
- Developmental Biology (4779)
- Ecology (7537)
- Epidemiology (2059)
- Evolutionary Biology (10594)
- Genetics (7740)
- Genomics (10154)
- Immunology (5215)
- Microbiology (13945)
- Molecular Biology (5397)
- Neuroscience (30847)
- Paleontology (216)
- Pathology (882)
- Pharmacology and Toxicology (1527)
- Physiology (2261)
- Plant Biology (5032)
- Synthetic Biology (1394)
- Systems Biology (4155)
- Zoology (814)