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 - 3.3 KB - MD5: bcaef152ca4d6a4781abf0dd11b1cce8
Matlab script to reproduce Figure 5 from the manuscript.
MATLAB Source Code - 5.4 KB - MD5: cd77452aa2602a56c449a2c7341720aa
Matlab script to reproduce Figure 6 from the manuscript.
MATLAB Source Code - 3.9 KB - MD5: dbebbbd1fb324bad2cd9af92e2050967
Matlab script to reproduce Figure 7 from the manuscript.
MATLAB Source Code - 3.4 KB - MD5: 12cfbf6c08b2cbe717d01ff3d452885e
Matlab script to reproduce Figure 8 from the manuscript.
MATLAB Source Code - 3.0 KB - MD5: 0f3a1553d05c8f6b5bc365a26d1e3d02
Matlab script to reproduce Figure 9 from the manuscript.
MATLAB Data - 123.4 MB - MD5: d7138653862e1297694566d12847fbaa
Simulated high-density EMG and high-density MMG singal for a 30 second long voluntary isometric contraction.
MATLAB Data - 123.6 MB - MD5: 2eaebd044199a875b7d781c6d876a72e
Simulated high-density EMG and high-density MMG singal for a 30 second long voluntary isometric contraction.
MATLAB Data - 36.9 MB - MD5: b3400823562a5aa41c3fef7d0c8cc26f
Simulated motor unit electric potentials (MUEPs) and motor unit magnetic fields (MUMFs) measured from a virtual high-density EMG or MMG array (70 sampling points).
MATLAB Data - 123.4 MB - MD5: 0ab1d9daf6ffcf6833ae8a3b862c1214
Simulated high-density EMG and high-density MMG singal for a 30 second long voluntary isometric contraction.
MATLAB Data - 123.3 MB - MD5: 94246fc8c83528fe6b3eea6b0f203f32
Simulated high-density EMG and high-density MMG singal for a 30 second long voluntary isometric contraction.
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