Our vision at the Institute for Modelling and Simulation of Biomechanical Systems (IMSB) is to use computational and experimental methods to enhance our knowledge about biomechanical systems with a particular focus on the Human System. For more information please also visit our institute's website.
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MATLAB Source Code - 1.7 KB - MD5: 6fdf47763cbbe254676c01932eff06ca
Help function to align two signals in the temporal domain.
MATLAB Source Code - 1.8 KB - MD5: 8f7923ca50fb1e6131939aebfe1812f8
Matlab scrip to compute the motor unit spike trains as described in the manuscript.
MATLAB Source Code - 1.2 KB - MD5: 708d6a6dc27d2ba2ca2d5522f43594d5
Matlab function to compute the cosine similarity between all motor unit responses given a libray of signals.
MATLAB Source Code - 2.9 KB - MD5: 846b89fd153afd2d0a578379c755664a
Matlab script to compute the EMG/MMG interference signal, given a motor unit response library and an input spike train.
MATLAB Data - 138.8 MB - MD5: 7f9ce8c05ef80e8f21b6046f71def128
Summary of the motor unit in-silico trials.
MATLAB Data - 53.5 MB - MD5: 1c2fad034c5c4fc319ce46cb01d2a68b
Full output of the motor unit decomposition for one in-silico experiments (required to replicate Figure 6).
MATLAB Source Code - 256 B - MD5: 5dc3bab3e883aa97a0b78159a695510e
Help function to perform the signal extension.
MATLAB Source Code - 1.8 KB - MD5: 7032d3ba2e1aceff3567738875cab828
Matlab script to compute motor unit territories as described in the manuscript.
MATLAB Source Code - 6.5 KB - MD5: 830f610816ff7160b5dbb8cba4434c34
Matlab function to perform an in-silico decomposition trial.
MATLAB Source Code - 8.5 KB - MD5: 40e322778f9d344352cf9c9058d72e69
Matlab script that performs the motor unit decomposition in-silico trials as described in the manuscript.
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