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High-density magnetomyography is superior to high-density surface electromyography for motor unit decomposition : a simulation study

, , , and . Journal of neural engineering, 20 (4): 046022 (2023)
DOI: 10.1088/1741-2552/ace7f7

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High-density magnetomyography is superior to high-density surface electromyography for motor unit decomposition : a simulation study, , , and . Journal of neural engineering, 20 (4): 046022 (2023)Replication Data for: "High-density magnetomyography is superior to high-density surface electromyography for motor unit decomposition: a simulation study", , , and . Dataset, (2023)Related to: Klotz, T., Lehmann, L., Negro, F., & Röhrle, O. (2023). High-density magnetomyography is superior to high-density surface electromyography for motor unit decomposition: a simulation study. Journal of Neural Engineering 20 (2023) 046022. doi: 10.1088/1741-2552/ace7f7.Replication Data for: "High-density magnetomyography is superior to high-desnity surface electromyography for motor unit decomposition: a simulation study", , , and . Dataset, (2023)Related to: Klotz, T., Lehmann, L., Negro, F., & Röhrle, O. (2023). High-density magnetomyography is superior to high-density surface electromyography for motor unit decomposition: a simulation study. Journal of Neural Engineering 20 (2023) 046022. doi: 10.1088/1741-2552/ace7f7.