The effect of phasic versus combined neuromuscular electrical stimulation using the StimaWELL 120MTRS system on multifidus muscle morphology and function in patients with chronic low back pain: a randomized controlled trial protocol

Maryse Fortin, Daniel Wolfe, Geoffrey Dover, Mathieu Boily, Maryse Fortin, Daniel Wolfe, Geoffrey Dover, Mathieu Boily

Abstract

Background: Neuromuscular electrical stimulation (NMES) is used to improve muscle strength clinically when rehabilitating various musculoskeletal disorders. However, the effects of NMES on muscle morphology and function in individuals with non-specific chronic low back pain (CLBP) have scarcely been investigated. Although research links deficits in the paraspinal musculature with subjective reports of pain and disability, it is unknown if treatment with NMES can help reverse these deficits. Therefore, the primary aim of this study is to compare the effects of two muscle therapy protocols with a medium-frequency electrotherapy device (the StimaWELL 120MTRS system) on multifidus muscle morphology and function in CLBP patients. The secondary aims are to determine the effects of these protocols subjective reports of pain intensity, pain interference, disability, and catastrophizing.

Methods: A total of 30 participants with non-specific CLBP, aged 18-60, will be recruited from local orthopedic clinics and databases. Participants will be randomized (1:1) to either the phasic or combined (phasic + tonic) muscle therapy protocols on the StimaWELL 120MTRS system. Participants will undergo 20 supervised electrotherapy treatments over a 10-week period. The primary outcomes will be multifidus morphology (e.g. cross-sectional area (CSA), fat infiltration) and function (e.g., contraction measured via %thickness change from a rested to contracted state, and stiffness at rest and during contraction). Secondary outcomes will include pain intensity, interference, disability, and catastrophizing. Both primary and secondary outcomes will be obtained at baseline and at 11-weeks; secondary outcomes measured via questionnaires will also be obtained at 6-weeks, while LBP intensity will be measured before and after each treatment. Paired t-tests will be used to assess within-group changes for all primary outcome measures. A two-way repeated-measures analysis of variance will be used to assess changes in secondary outcomes over time.

Discussion: The results of this trial will help clarify the role of medium-frequency NMES on lumbar multifidus morphology and function.

Trial registration: NCT04891692, registered retrospectively on May 18, 2021.

Keywords: Electrical stimulation therapy; Low back pain; MRI; Multifidus muscle; Ultrasound.

Conflict of interest statement

The authors declare that they have no competing interests.

© 2022. The Author(s).

Figures

Fig. 1
Fig. 1
Consort Flow Diagram
Fig. 2
Fig. 2
StimaWELL 120MTRS system

References

    1. Wong JJ, Côté P, Tricco AC, Rosella LC. Examining the effects of low back pain and mental health symptoms on healthcare utilisation and costs: A protocol for a population-based cohort study. BMJ Open. 2019;9(9):e013749.
    1. Murray CJ, Barber RM, Foreman KJ, Ozgoren AA, Abd-Allah F, Abera SF, et al. Global, regional, and national disability-adjusted life years (Dalys) for 306 diseases and injuries and healthy life expectancy (Hale) for 188 countries, 1990–2013: Quantifying the Epidemiological Transition. Lancet. 2015;386(10009):2145–2191. doi: 10.1016/S0140-6736(15)61340-X.
    1. Church J, Saunders D, Wanke M, Pong R, Spooner C, Dorgan M. Citizen participation in health decision-making: Past experience and future prospects. J Public Health Policy. 2002;23(1):12. doi: 10.2307/3343116.
    1. Abraham I, Killackey-Jones B. Lack of evidence-based research for idiopathic low back pain. Arch Intern Med. 2002;162(13):1442. doi: 10.1001/archinte.162.13.1442.
    1. Danneels L. Structural changes of lumbar muscles in non-specific low back pain. Pain Physician. 2016;19(7):E985–1000.
    1. Cagnie B, Dhooge F, Schumacher C, De Meulemeester K, Petrovic M, van Oosterwijck J, et al. Fiber typing of the erector spinae and multifidus muscles in healthy controls and back pain patients: a systematic literature review. J Manipulative Physiol Ther. 2015;38(9):653–663. doi: 10.1016/j.jmpt.2015.10.004.
    1. Stokes M, Hides J, Elliott J, Kiesel K, Hodges P. Rehabilitative ultrasound imaging of the posterior paraspinal muscles. J Orthop Sports Phys Ther. 2007;37(10):581–595. doi: 10.2519/jospt.2007.2599.
    1. Koppenhaver S, Gaffney E, Oates A, Eberle L, Young B, Hebert J, et al. Lumbar muscle stiffness is different in individuals with low back pain than asymptomatic controls and is associated with pain and disability, but not common physical examination findings. Musculoskelet Sci Pract. 2020;45:102078. doi: 10.1016/j.msksp.2019.102078.
    1. Murillo C, Falla D, Rushton A, Sanderson A, Heneghan NR. Shear wave elastography investigation of multifidus stiffness in individuals with low back pain. J Electromyogr Kinesiol. 2019;47:19–24. doi: 10.1016/j.jelekin.2019.05.004.
    1. Hides J, Stanton W, Mcmahon S, Sims K, Richardson C. Effect of stabilization training on multifidus muscle cross-sectional area among young elite cricketers with low back pain. J Orthop Sports Phys Ther. 2008;38(3):101–108. doi: 10.2519/jospt.2008.2658.
    1. Danneels L, Coorevits P, Cools A, Vanderstraeten G, Cambier D, Witvrouw E, et al. Differences in electromyographic activity in the multifidus muscle and the iliocostalis lumborum between healthy subjects and patients with sub-acute and chronic low back pain. Eur Spine J. 2001;11(1):13–19. doi: 10.1007/s005860100314.
    1. Noonan AM, Brown SH. Paraspinal muscle pathophysiology associated with low back pain and spine degenerative disorders. JOR Spine. 2021;4(3).
    1. Berglund L, Aasa B, Michaelson P, Aasa U. Effects of low-load motor control exercises and a high-load lifting exercise on lumbar multifidus thickness. Spine. 2017;42(15):E876–82.
    1. Kliziene I, Sipaviciene S, Klizas S, Imbrasiene D. Effects of core stability exercises on multifidus muscles in healthy women and women with chronic low-back pain. J Back Musculoskelet Rehabil. 2015;28(4):841–847. doi: 10.3233/BMR-150596.
    1. Hosseinifar M, Akbari M, Behtash H, Amiri M, Sarrafzadeh J. The effects of stabilization and McKenzie exercises on transverse abdominis and multifidus muscle thickness, pain, and disability: a randomized controlled trial in nonspecific chronic low back pain. J Phys Ther Sci. 2013;25(12):1541–1545. doi: 10.1589/jpts.25.1541.
    1. Berry DB, Padwal J, Johnson S, Englund EK, Ward SR, Shahidi B. The effect of high-intensity resistance exercise on lumbar musculature in patients with low back pain: a preliminary study. BMC Musculoskelet Disord. 2019;20(1);290.
    1. Draper DO, Knight KL. Electrotherapy. Therapeutic modalities: The art and science. 2nd. Baltimore: Lippincott Williams & Wilkins; 2013.
    1. Lake DA. Neuromuscular electrical stimulation. Sports Med. 1992;13(5):320–336. doi: 10.2165/00007256-199213050-00003.
    1. Coghlan S, Crowe L, McCarthyPersson U, Minogue C, Caulfield B. Neuromuscular electrical stimulation training results in enhanced activation of spinal stabilizing muscles during spinal loading and improvements in pain ratings. Annu Int Con IEEE Eng Med Biol Soc. 2011:7622–5.
    1. Batistella CE, Bidin F, Giacomelli I, Nunez MA, Gasoto E, Albuquerque CE, et al. Effects of the Russian current in the treatment of low back pain in women: a randomized clinical trial. J Bodyw Mov Ther. 2020;24(2):118–122. doi: 10.1016/j.jbmt.2019.10.009.
    1. Hicks GE, Sions JM, Velasco TO, Manal TJ. Trunk muscle training augmented with neuromuscular electrical stimulation appears to improve function in older adults with chronic low back pain. Clin J Pain. 2016;32(10):898–906. doi: 10.1097/AJP.0000000000000348.
    1. Guo P, Wang J-wei, Tong A. Therapeutic effectiveness of neuromuscular electrical stimulation for treating patients with chronic low back pain. Medicine. 2018;97(48):e13197.
    1. Alrwaily M, Schneider M, Sowa G, Timko M, Whitney SL, Delitto A. Stabilization exercises combined with neuromuscular electrical stimulation for patients with chronic low back pain: a randomized controlled trial. Braz J Phys Ther. 2019;23(6):506–515. doi: 10.1016/j.bjpt.2018.10.003.
    1. Sillen MJ, Franssen FM, Gosker HR, Wouters EF, Spruit MA. Metabolic and structural changes in lower-limb skeletal muscle following neuromuscular electrical stimulation: A systematic review. Plos One. 2013;8(9):e69391.
    1. Sions JM, Crippen DJC, Hicks GE, Alroumi AM, Manal TJ, Pohlig RT. Exploring neuromuscular electrical stimulation intensity effects on multifidus muscle activity in adults with chronic low back pain: an ultrasound imaging–informed investigation. Clin Med Insights. 2019;12:117954411984957.
    1. Baek SO, Ahn SH, Jones R, Cho HK, Jung GS, Cho YW, et al. Activations of deep lumbar stabilizing muscles by transcutaneous neuromuscular electrical stimulation of lumbar Paraspinal regions. Ann Rehabil Med. 2014;38(4):506. doi: 10.5535/arm.2014.38.4.506.
    1. Ostelo RW, Deyo RA, Stratford P, Waddell G, Croft P, Von Korff M, et al. Interpreting change scores for pain and functional status in low back pain. Spine. 2008;33(1):90–94. doi: 10.1097/BRS.0b013e31815e3a10.
    1. McMaster DT, Gill N, Cronin J, McGuigan M. The development, retention and decay rates of strength and power in elite rugby union, rugby league and American football: a systematic review. Sports Med. 2013;43(5):367–384. doi: 10.1007/s40279-013-0031-3.
    1. Ochi E, Maruo M, Tsuchiya Y, Ishii N, Miura K, Sasaki K. Higher training frequency is important for gaining muscular strength under volume-matched training. Front Physiol. 2018;9:744. doi: 10.3389/fphys.2018.00744.
    1. Sigrist RMS, Liau J, Kaffas AE, Chammas MC, Willmann JK. Ultrasound elastography: review of techniques and clinical applications. Theranostics. 2017;7(5):1303–1329. doi: 10.7150/thno.18650.
    1. Ng JK, Kippers V, Richardson CA. Muscle fibre orientation of abdominal muscles and suggested surface EMG electrode positions. Electromyogr Clin Neurophysiol. 1998;38(1):51–58.
    1. Vanderthommen M, Duchateau J. Electrical stimulation as a modality to improve performance of the neuromuscular system. Exerc Sport Sci Rev. 2007;35(4):180–185. doi: 10.1097/jes.0b013e318156e785.
    1. Fortin M, Battié MC. Quantitative paraspinal muscle measurements: Inter-software reliability and agreement using OsiriX and imagej. Phys Ther. 2012;92(6):853–864. doi: 10.2522/ptj.20110380.
    1. Fortin M, Omidyeganeh M, Battié MC, Ahmad O, Rivaz H. Evaluation of an automated thresholding algorithm for the quantification of paraspinal muscle composition from MRI images. BioMed Eng OnLine. 2017;16(1):61.
    1. Crawford RJ, Filli L, Elliott JM, Nanz D, Fischer MA, Marcon M, et al. Age- and level-dependence of fatty infiltration in lumbar paravertebral muscles of healthy volunteers. Am J Neuroradiol. 2015;37(4):742–748. doi: 10.3174/ajnr.A4596.
    1. Kiesel KB, Uhl TL, Underwood FB, Rodd DW, Nitz AJ. Measurement of lumbar multifidus muscle contraction with rehabilitative ultrasound imaging. Man Ther. 2007;12(2):161–166. doi: 10.1016/j.math.2006.06.011.
    1. Larivière C, Gagnon D, De Oliveira E, Henry SM, Mecheri H, Dumas J-P. Ultrasound measures of the lumbar multifidus: Effect of task and transducer position on reliability. PM R. 2013;5(8):678–687. doi: 10.1016/j.pmrj.2013.03.010.
    1. Koppenhaver S, Kniss J, Lilley D, Oates M, Fernández-de-las-Peñas C, Maher R, et al. Reliability of ultrasound shear-wave elastography in assessing low back musculature elasticity in asymptomatic individuals. J Electromyogr Kinesiol. 2018;39:49–57. doi: 10.1016/j.jelekin.2018.01.010.
    1. Kelly JP, Koppenhaver SL, Michener LA, Proulx L, Bisagni F, Cleland JA. Characterization of tissue stiffness of the infraspinatus, erector spinae, and gastrocnemius muscle using ultrasound shear wave elastography and superficial mechanical deformation. J Electromyogr Kinesiol. 2018;38:73–80. doi: 10.1016/j.jelekin.2017.11.001.
    1. Childs JD, Piva SR, Fritz JM. Responsiveness of the numeric pain rating scale in patients with low back pain. Spine. 2005;30(11):1331–1334. doi: 10.1097/01.brs.0000164099.92112.29.
    1. Chapman JR, Norvell DC, Hermsmeyer JT, Bransford RJ, DeVine J, McGirt MJ, et al. Evaluating common outcomes for measuring treatment success for chronic low back pain. Spine. 2011;36(21 Suppl):S54–68.
    1. Osman A, Barrios FX, Gutierrez PM, Kopper BA, Merrifield T, Grittmann L. The Pain Catastrophizing Scale: further psychometric evaluation with adult samples. J Behav Med. 2000;23(4):351–365. doi: 10.1023/A:1005548801037.
    1. Songraonen D, Sungnak P, Piriyaprasarth P, et al. Combined neuromuscular electrical stimulation with motor control exercise can improve lumbar multifidus activation in individuals with recurrent low back pain. Sci Rep. 2021;11(1):14815. doi: 10.1038/s41598-021-94402-2.

Source: PubMed

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