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Myofascial pain syndrome is a chronic pain disorder characterized by myofascial trigger points (MTrPs). Quantitative ultrasound (US) techniques can be used to discriminate MTrPs from healthy muscle. In this study, 90 B-mode US images of upper trapezius muscles were collected from 63 participants (left and/or right side(s)). Four texture feature approaches (individually and a combination of them) were employed that focused on identifying spots, and edges were used to explore the discrimination between the three groups: active MTrPs ( = 30), latent MTrPs ( = 30), and healthy muscle ( = 30). Machine learning (ML) and one-way analysis of variance were used to investigate the discrimination ability of the different approaches. Statistically significant results were seen in almost all examined features for each texture feature approach, but, in contrast, ML techniques struggled to produce robust discrimination. The ML techniques showed that two texture features (i.e., correlation and mean) within the combination of texture features were most important in classifying the three groups. This discrepancy between traditional statistical analysis and ML techniques prompts the need for further investigation of texture-based approaches in US for the discrimination of MTrPs.
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http://dx.doi.org/10.3390/s23249873 | DOI Listing |
Clin Exp Dent Res
October 2025
Universal Scientific Education and Research Network (USERN), Tehran, Iran.
Objectives: Among the minimally invasive techniques for treating temporomandibular joint disorders (TMDs) is dry needling, which can be used as a potential treatment method. This study aims to review current knowledge to understand the impact of dry needling on treating TMDs.
Methods: This systematic review was carried out in alignment with the guidelines outlined in the Preferred Reporting Items for Systematic Reviews and Meta-Analyses (PRISMA).
Am J Phys Med Rehabil
September 2025
Ghent University, Department of Rehabilitation Sciences. Corneel Heymanslaan 10, Ghent, Belgium.
The interest in dry needling as a treatment option for myofascial pain has flourished for the last decades and will probably continue to do so, since multiple clinical effects can be attributed to this technique. However, evidence about the underlying physiological mechanisms of its effects is still underrepresented in scientific research and caution must be taken in generalizing results from acupuncture or animal research. This review offers an overview of the possible mechanisms involved in the pathophysiology of myofascial trigger points, i.
View Article and Find Full Text PDFPLoS One
September 2025
Department of Algology, The Affiliated Hospital of Guizhou Medical University, Guiyang, Guizhou, China.
Background: In clinical practice, silver needle thermal conduction therapy has a definite effect on myofascial pain syndrome (MPS). However, there is a lack of objective evidence to evaluate the efficacy of this therapy. This study aimed to assess the effectiveness of silver needle thermal conduction therapy on MPS rats by objective therapeutic index.
View Article and Find Full Text PDFAnn Rehabil Med
August 2025
Medical Department Wojciech Korfanty, Upper Silesian Academy, Katowice, Poland.
Objective: To compare the Hong (GH) and sustained insertion (GS) dry needling methods in patients with myofascial neck pain, this experimental study was conducted.
Methods: A randomized controlled trial included 30 participants, assigned to either the GH (n=15) or GS (n=15) group. Each group received treatment on either the right or left side, with one side receiving experimental DN and the other receiving control (sham) DN.
World J Clin Cases
September 2025
Rehabilitation Medicine Center and Institute of Rehabilitation Medicine, West China Hospital, Chengdu 610041, Sichuan Province, China.
Background: Myofascial pain syndrome (MPS) is a common musculoskeletal disease associated with myofascial trigger point (MTrP). Muscle injury is one of the common causes of MPS. Currently, there is no effective treatment for MPS.
View Article and Find Full Text PDF