An Assessment of the Hip Muscular Imbalance for Patients with Rheumatism
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An Assessment of the Hip Muscular Imbalance for Patients with Rheumatism

Authors: Anthony Bawa, Konstantinos Banitsas

Abstract:

Rheumatism is a muscular disorder that affects the muscles of the upper and lower limbs. This condition could potentially progress to impair the movement of patients. This study aims to investigate the hip muscular imbalance in patients with chronic rheumatism. A clinical trial involving a total of 15 participants, made up of 10 patients and five control subjects, took place in KATH Hospital between August and September. Participants recruited for the study were of age 54 ± 8 years, weight 65 ± 8 kg, and height 176 ± 8 cm. Muscle signals were recorded from the rectus femoris, and vastus lateralis on the right and left hip of participants. The parameters used in determining the hip muscular imbalances were the maximum voluntary contraction (MVC%), the mean difference, and hip muscle fatigue levels. The mean signals were compared using a t-test, and the metrics for muscle fatigue assessment were based on the root mean square (RMS), mean absolute value (MAV) and mean frequency (MEF), which were computed between the hip muscles of participants. The results indicated that there were significant imbalances in the muscle coactivity between the right and left hip muscles of patients. The patients’ MVC values were observed to be above 10% when compared with control subjects. Furthermore, the mean difference was seen to be higher with p > 0.002 among patients, which indicated clear differences in the hip muscle contraction activities. The findings indicate significant hip muscular imbalances for patients with rheumatism compared with control subjects. Information about the imbalances among patients will be useful for clinicians in designing therapeutic muscle-strengthening exercises.

Keywords: Muscular, imbalances, rheumatism, hip.

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References:


[1] de Visser M, Vermeulen M, Wokke JH. Neuromusculaire ziekten. Maarssen: Elsevier/Bunge; 1999.
[2] Dombovy ML. “Rehabilitation management of neuropathies”. In: Dyck PJ, Thomas PK, editors. Peripheral neuropathy. 4th ed. Philadelphia: Elsevier Saunders; 2005. p 2621-36.
[3] Cup, Edith H., et al. "Exercise therapy and other types of physical therapy for patients with neuromuscular diseases: a systematic review." Archives of physical medicine and rehabilitation 88.11 (2007): 1452-1464
[4] Saljoughian,M..(2012). “Polymyalgia rheumatica: A severe, self-limiting disease.” U.S Pharmacist.
[5] Eagle M. “Report on the muscular dystrophy campaign workshop: exercise in neuromuscular diseases.” Newcastle, January 2002. Neuromuscul Disord 2002;12:975-83.
[6] Scott Frothingham, Gregory M., https://www.healthline.com/health/muscles-imbalance Feb (2020), Accessed October 18,2022
[7] Wojdala, Grzegorz, et al. "Impact of the “Sling Shot” Supportive Device on Upper-Body Neuromuscular Activity during the Bench Press Exercise." International Journal of Environmental Research and Public Health 17.20 (2020): 7695.
[8] Teixeira, Jorge, et al. "Isokinetic assessment of muscle imbalances and bilateral differences between knee extensores and flexores’ strength in basketball, football, handball and volleyball athletes." Int J Sports Sci 4.1 (2014): 1-6.
[9] Alizadehkhaiyat, Omid, et al. "Strength and fatigability of selected muscles in upper limb: assessing muscle imbalance relevant to tennis elbow." Journal of Electromyography and Kinesiology 17.4 (2007): 428-436.
[10] Arab, Amir M., and Mohammad R. Nourbakhsh. "The relationship between hip abductor muscle strength and iliotibial band tightness in individuals with low back pain." Chiropractic & osteopathy 18.1 (2010): 1-5.
[11] Nadler, Scott F., et al. "The relationship between lower extremity injury, low back pain, and hip muscle strength in male and female collegiate athletes." Clinical Journal of Sport Medicine 10.2 (2000): 89-97.
[12] Hortobágyi, Tibor, et al. "Altered hamstring-quadriceps muscle balance in patients with knee osteoarthritis." Clinical biomechanics 20.1 (2005): 97-104.
[13] System, D. Delsys Europe 2022 http://www.adinstruments.com/products/trigno-emg-sensors (Access on: 7th December 2022)
[14] Heywood, Sophie, et al. "Low-cost electromyography–Validation against a commercial system using both manual and automated activation timing thresholds." Journal of Electromyography and Kinesiology 42 (2018): 74-80.
[15] Bawa, Anthony, and Konstantinos Banitsas. 2022. "Design Validation of a Low-Cost EMG Sensor Compared to a Commercial-Based System for Measuring Muscle Activity and Fatigue" Sensors 22, no. 15: 5799. https://doi.org/10.3390/s22155799
[16] Meldrum, Dara, et al. "Maximum voluntary isometric contraction: reference values and clinical application." Amyotrophic Lateral Sclerosis 8.1 (2007): 47-55.
[17] J.L. Dideriksen, D. Farina, R.M. Enoka, “Influence of fatigue on the simulated relation between the amplitude of the surface electromyogram and muscle force, Philosophical Transactions of the Royal Society of London A” Mathematical, Physical and Engineering Sciences. 368 (2010) 2765–2781.
[18] G. Allison, T. Fujiwara, “The relationship between EMG median frequency and low frequency band amplitude changes at different levels of muscle capacity” Clinical Biomechanics. 17 (2002) 46