Multi-Frequency Impedance Myography: The PhaseX Effect
Roman Kusche, Martin Ryschka

TL;DR
This paper introduces the PhaseX Effect, a robust phase response marker from impedance myography that improves muscle activity detection for prosthetic control with low signal processing needs.
Contribution
It proposes the PhaseX Effect as a novel, reliable marker for muscle contraction detection using impedance myography, enhancing prosthetic control methods.
Findings
The PhaseX Effect is highly robust against electrode motion.
Muscle contractions can be detected via simple phase response analysis.
Measurements on subjects confirmed the expected behavior of the muscle model.
Abstract
Muscle contraction is often detected via EMG in prosthetics. However, signal disturbances due to electrode motions can lead to misinterpretations. Therefore, alternative measurement approaches are desired to increase the reliability of the results. In this work, a novel approach based on impedance myography is proposed. By means of an equivalent circuit of a muscle, its electrical characteristics during contractions are analyzed. In this analysis, a new biomedical marker named the PhaseX Effect is described. This effect is based on the specific behavior of the phase response when the muscle is contracted and is interesting due to its high signal robustness and low signal processing requirements. The resilience of this effect against electrode motion is also analyzed. Measurements of the complex impedance myography spectra are performed on the forearms of three subjects during relaxation…
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