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Muscle & Nerve|September 1, 1996
AAEM minimonograph #25: single-fiber electromyographyD B Sanders, E V StålbergMuscle & Nerve|June 1, 1986
Simulation and analysis of the electromyographic interference pattern in normal muscle. Part I: Turns and amplitude measurementsS D Nandedkar, D B Sanders, E V StålbergMuscle & Nerve|July 1, 1986
Simulation and analysis of the electromyographic interference pattern in normal muscle. Part II: Activity, upper centile amplitude, and number of small segmentsS D Nandedkar, D B Sanders, E V StålbergMuscle & Nerve|July 1, 1986
Automatic analysis of the electromyographic interference pattern. Part II: Findings in control subjects and in some neuromuscular diseasesS D Nandedkar, D B Sanders, E V StålbergJournal of Clinical Neurophysiology : Official Publication of the American Electroencephalographic Society|September 1, 1996
Analysis of the electromyographic interference patternD B Sanders, E V Stålberg, S D NandedkarElectroencephalography and Clinical Neurophysiology|August 1, 1988
EMG of reinnervated motor units: a simulation studyS D Nandedkar, D B Sanders, E V StålbergMuscle & Nerve|June 1, 1986
Automatic analysis of the electromyographic interference pattern. Part I: Development of quantitative featuresS D Nandedkar, D B Sanders, E V StålbergMuscle & Nerve|February 1, 1988
Simulation of concentric needle EMG motor unit action potentialsS D Nandedkar, D B Sanders, E V Stålberg, et al.Electroencephalography and Clinical Neurophysiology|June 1, 1988
Analysis of amplitude and area of concentric needle EMG motor unit action potentialsS D Nandedkar, P E Barkhaus, D B Sanders, et al.Journal of Clinical Neuromuscular Disease|December 17, 2008
Predictive value of single-fiber electromyography in the extensor digitorum communis muscle of patients with ocular myasthenia gravis: a retrospective studyA Rostedt, L L Saders, L J Edards, et al.Pageof 11