Basic concepts of needle electromyography
Jee‐Eun Kim, Jin Myoung Seok, Suk-Won Ahn, Byung-Nam Yoon, Young‐Min Lim, Kwang‐Kuk Kim, Ki-Han Kwon, Kee Duk Park, Bum Chun Suh
Abstract
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Jee‐Eun Kim, Jin Myoung Seok, Suk-Won Ahn, Byung-Nam Yoon, Young‐Min Lim, Kwang‐Kuk Kim, Ki-Han Kwon, Kee Duk Park, Bum Chun Suh
Abstract
Open-access reader
Clinical evaluations, nerve conduction studies, and electromyography play major complementary roles in electrophysiologic diagnoses.Electromyography can be used to assess pathologic changes and localize lesions occurring in locations ranging from motor units to anterior-horn cells.Successfully performing electromyography requires knowledge of the anatomy, physiology, and pathology of the peripheral nervous system as well as sufficient skill and interpretation ability.Electromyography techniques include acquiring data from visual/ auditory signals and performing needle positioning, semiquantitation, and interpretation.Here we introduce the basic concepts of electromyography to guide clinicians in performing electromyography appropriately.
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Clinical evaluations, nerve conduction studies, and electromyography play major complementary roles in electrophysiologic diagnoses.Electromyography can be used to assess pathologic changes and localize lesions occurring in locations ranging from motor units to anterior-horn cells.Successfully performing electromyography requires knowledge of the anatomy, physiology, and pathology of the peripheral nervous system as well as sufficient skill and interpretation ability.Electromyography techniques include acquiring data from visual/ auditory signals and performing needle positioning, semiquantitation, and interpretation.Here we introduce the basic concepts of electromyography to guide clinicians in performing electromyography appropriately.
Key concepts: Electromyography, Physical medicine and rehabilitation, Medicine, Nerve conduction, Computer science, Surgery