Prevalence of Myofascial Trigger Points in Patients with Radiating and Non-Radiating Low Back Pain: A Systematic Review
Abstract
1. Introduction
2. Materials and Methods
2.1. Study Design
2.2. Search and Article Management Resources
2.3. Search Strategy
- -
- Population: Individuals with a diagnosis of non-specific LBP (no underlying medical condition) with or without radiating pain to the lower extremity.
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- Intervention: No applicable.
- -
- Comparison: Asymptomatic individuals or comparisons between painful or dominant sides.
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2.4. Eligibility Criteria
2.5. Methodological Quality Assessment
2.6. Screening and Data Extraction
3. Results
3.1. Study Selection
3.2. Study Characteristics
3.3. Methodological Quality
3.4. Results Synthesis: Prevalence of Active Trigger Points
3.5. Results Synthesis: Prevalence of Latent Trigger Points
4. Discussion
4.1. Future Resarch
4.2. Limitations
5. Conclusions
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Conflicts of Interest
Abbreviations
LBP | Low back pain |
MeSH | Medical Subject Headings |
MTrP | Myofascial trigger point |
PICO | Population, Intervention, Comparison, Outcome |
PRISMA | Preferred Reporting Items for Systematic Reviews and Meta-Analyses |
References
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Reference | Study Design | Demographic Characteristics | Clinical Characteristics | Complementary MTrP Identification Procedures | Muscles Assessed |
---|---|---|---|---|---|
Adelmanesh et al., 2015 [33] | Case–Control | n = 271 Males 43.2% Females 56.8% | Radiating Low Back Pain | Pain Pressure Thresholds | Gluteus region (no muscles specified) |
Adelmanesh et al., 2016 [16] | Diagnostic accuracy | n = 185 Males 47% Females 53% | Radiating Low Back Pain and Non-Radiating Low Back Pain | Pain Pressure Thresholds | Gluteus region (no muscles specified) |
Álvarez-Delgado et al., 2022 [29] | Randomized Clinical Trial | n = 87 n = 80 with MTrPs n = 7 without MTrPs | Non-Radiating Low Back Pain | Pain Pressure Thresholds | Gluteus medius |
Carroll et al., 2022 [31] | Observational | n = 42 Males 17% Females 83% | Non-Radiating Low Back Pain | No | Quadratus lumborum |
Holm-Jensen et al., 2020 [30] | Inter-examiner reliability | n = 32 Males 53% Females 47% | Radiating Low Back Pain and Non-Radiating Low Back Pain | No | Quadratus lumborum Gluteus medius Gluteus minimus Piriformis |
Iglesias-González et al., 2013 [17] | Observational | n = 42 Males 50% Females 50% | Non-Radiating Low Back Pain | No | Quadratus lumborum Lumbar iliocostalis Psoas Piriformis Gluteus medius Gluteus minimus |
Hua et al., 1994 [28] | Case–Control | n = 124 Males 52.4% Females 47.6% | Non-Radiating Low Back Pain | No | Quadratus lumborum Gluteus medius |
Saeidian et al., 2014 [32] | Quasi-experimental | n = 98 n = 64 with MTrPs n = 34 without MTrPs | Radiating Low Back Pain | No | Adductor longus Medial head of the gastrocnemius Tibialis anterior and posterior Short head of the biceps femoris Lumbar paraspinal muscles |
Salom-Moreno et al., 2015 [27] | Case series | n = 13 Males 23.1% Females 76.9% | Non-Radiating Low Back Pain | Pain Pressure Thresholds | Gluteus medius |
Reference | Patient Group Description | Control Group Description | Selection Bias | Exposure | Blinded Measurement of Exposure | Confounders | Results | Score |
---|---|---|---|---|---|---|---|---|
Adelmanesh et al., 2015 [33] | 1 | 1 | 1 | 1 | 0 | 1 | 1 | 6/7 |
Adelmanesh et al., 2016 [16] | 1 | 0 | 1 | 1 | 1 | 1 | 1 | 6/7 |
Álvarez-Delgado et al., 2022 [29] | 1 | 0 | 1 | 1 | 1 | 1 | 1 | 6/7 |
Carroll et al., 2022 [31] | 1 | 0 | 1 | 1 | 1 | 0 | 1 | 5/7 |
Holm-Jensen et al., 2020 [30] | 1 | 1 | 1 | 1 | 0 | 0 | 1 | 5/7 |
Iglesias-González et al., 2013 [17] | 1 | 1 | 1 | 1 | 0 | 0 | 1 | 5/7 |
Hua et al., 1994 [28] | 1 | 1 | 1 | 1 | 0 | 0 | 1 | 5/7 |
Saeidian et al., 2014 [32] | 1 | 0 | 1 | 1 | 0 | 0 | 1 | 4/7 |
Salom- Moreno et al., 2015 [27] | 1 | 0 | 1 | 1 | 0 | 1 | 1 | 5/7 |
Active Myofascial Trigger Points | Latent Myofascial Trigger Points | References | |||
---|---|---|---|---|---|
Radiating Low Back Pain | Non-Radiating Low Back Pain | Radiating Low Back Pain | Non-Radiating Low Back Pain | Asymptomatic Subjects | |
Quadratus lumborum | |||||
- | 36% | - | - | - | Hua et al., 1994 [28] |
30% | - | - | - | - | Holm-Jensen et al., 2020 [30] |
- | 55% a–45% b | - | 14% a–17% b | 0% c–10% d | Iglesias-González et al., 2013 [17] |
Gluteal region (no specific muscles reported) | |||||
76.4% | - | - | - | - | Adelmanesh et al., 2015 [33] |
74.1% | 8.5% | - | - | - | Adelmanesh et al., 2016 [16] |
Gluteus medius | |||||
- | - | - | 91% | - | Álvarez-Delgado et al., 2022 [29] |
- | 39–93% | - | - | - | Salom-Moreno et al., 2015 [27] |
- | 43–45% | - | 74% | - | Carroll et al., 2022 [31] |
- | 34% | - | - | - | Hua et al., 1994 [28] |
35% | - | - | - | - | Holm-Jensen et al., 2020 [30] |
- | 35% a–38% b | - | 12% a–17% b | 5% | Iglesias-González et al., 2013 [17] |
Gluteus minimus | |||||
- | 12% a–5% b | - | 7% a–12% b | 12 c–10% d | Iglesias-González et al., 2013 [17] |
42% | - | - | - | - | Holm-Jensen et al., 2020 [28] |
Piriformis | |||||
42% | - | - | - | - | Holm-Jensen et al., 2020 [30] |
- | 35% a–28% b | - | 22% a–19% b | 0% c–7% d | Iglesias-González et al., 2013 [17] |
Psoas | |||||
- | 10% a–5% b | - | 26% a–36% b | 19% c–26% d | Iglesias-González et al., 2013 [17] |
Iliocostalis | |||||
- | 38% a–33% b | - | 19% | 0% c–5% d | Iglesias-González et al., 2013 [17] |
Lower Extremity (no specific muscles reported) | |||||
- | 65% a | - | - | - | Saeidian et al., 2014 [32] |
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Monclús-Díez, G.; Díaz-Arribas, M.J.; Fernández-de-las-Peñas, C.; Kosson, D.; Kołacz, M.; Kobylarz, M.D.; Sánchez-Jorge, S.; Valera-Calero, J.A. Prevalence of Myofascial Trigger Points in Patients with Radiating and Non-Radiating Low Back Pain: A Systematic Review. Biomedicines 2025, 13, 1453. https://doi.org/10.3390/biomedicines13061453
Monclús-Díez G, Díaz-Arribas MJ, Fernández-de-las-Peñas C, Kosson D, Kołacz M, Kobylarz MD, Sánchez-Jorge S, Valera-Calero JA. Prevalence of Myofascial Trigger Points in Patients with Radiating and Non-Radiating Low Back Pain: A Systematic Review. Biomedicines. 2025; 13(6):1453. https://doi.org/10.3390/biomedicines13061453
Chicago/Turabian StyleMonclús-Díez, Germán, María José Díaz-Arribas, César Fernández-de-las-Peñas, Dariusz Kosson, Marcin Kołacz, Mateusz D. Kobylarz, Sandra Sánchez-Jorge, and Juan Antonio Valera-Calero. 2025. "Prevalence of Myofascial Trigger Points in Patients with Radiating and Non-Radiating Low Back Pain: A Systematic Review" Biomedicines 13, no. 6: 1453. https://doi.org/10.3390/biomedicines13061453
APA StyleMonclús-Díez, G., Díaz-Arribas, M. J., Fernández-de-las-Peñas, C., Kosson, D., Kołacz, M., Kobylarz, M. D., Sánchez-Jorge, S., & Valera-Calero, J. A. (2025). Prevalence of Myofascial Trigger Points in Patients with Radiating and Non-Radiating Low Back Pain: A Systematic Review. Biomedicines, 13(6), 1453. https://doi.org/10.3390/biomedicines13061453