The Application of Surface Electromyography Technology in Evaluating Paraspinal Muscle Function

Author:

Suo Moran12ORCID,Zhou Lina3,Wang Jinzuo12ORCID,Huang Huagui12ORCID,Zhang Jing12,Sun Tianze12ORCID,Liu Xin12,Chen Xin4ORCID,Song Chunli3,Li Zhonghai12ORCID

Affiliation:

1. Department of Orthopedics, First Affiliated Hospital of Dalian Medical University, Dalian 116011, China

2. Key Laboratory of Molecular Mechanism for Repair and Remodeling of Orthopedic Diseases, Dalian 116000, China

3. Department of Neurology, First Affiliated Hospital of Dalian Medical University, Dalian 116011, China

4. Musculoskeletal Research Laboratory, Department of Orthopaedics & Traumatology, Faculty of Medicine, The Chinese University of Hong Kong, Hong Kong, China

Abstract

Surface electromyography (sEMG) has emerged as a valuable tool for assessing muscle activity in various clinical and research settings. This review focuses on the application of sEMG specifically in the context of paraspinal muscles. The paraspinal muscles play a critical role in providing stability and facilitating movement of the spine. Dysfunctions or alterations in paraspinal muscle activity can lead to various musculoskeletal disorders and spinal pathologies. Therefore, understanding and quantifying paraspinal muscle activity is crucial for accurate diagnosis, treatment planning, and monitoring therapeutic interventions. This review discusses the clinical applications of sEMG in paraspinal muscles, including the assessment of low back pain, spinal disorders, and rehabilitation interventions. It explores how sEMG can aid in diagnosing the potential causes of low back pain and monitoring the effectiveness of physical therapy, spinal manipulative therapy, and exercise protocols. It also discusses emerging technologies and advancements in sEMG techniques that aim to enhance the accuracy and reliability of paraspinal muscle assessment. In summary, the application of sEMG in paraspinal muscles provides valuable insights into muscle function, dysfunction, and therapeutic interventions. By examining the literature on sEMG in paraspinal muscles, this review offers a comprehensive understanding of the current state of research, identifies knowledge gaps, and suggests future directions for optimizing the use of sEMG in assessing paraspinal muscle activity.

Funder

Science and Technology Innovation Foundation of Dalian

Natural Science Foundation of Liaoning Province

Joint Medical-Industrial Innovation Fund of the First Hospital of Dalian Medical University–Dalian Institute of Chemical Physics, Chinese Academy of Sciences

Publisher

MDPI AG

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