Comparative Analysis of Muscle Activity and Circulatory Dynamics: A Crossover Study Using Leg Exercise Apparatus and Ergometer

Author:

Hirasawa Nobuhiro123,Shimizu Yukiyo4ORCID,Haginoya Ayumu5,Soma Yuichiro5,Watanabe Gaku12,Takehara Kei12,Tokeji Kayo2,Mataki Yuki2,Ishii Ryota6,Hada Yasushi4ORCID

Affiliation:

1. Graduate School of Comprehensive Human Sciences, University of Tsukuba, Tsukuba 305-8575, Japan

2. Department of Rehabilitation Medicine, University of Tsukuba Hospital, Tsukuba 305-8576, Japan

3. Department of Rehabilitation Medicine, Ibaraki Prefectural University of Health Sciences Hospital, Ami 300-0394, Japan

4. Department of Rehabilitation Medicine, Institute of Medicine, University of Tsukuba, Tsukuba 305-8575, Japan

5. Department of Rehabilitation, University of Tsukuba Hospital, Tsukuba 305-8576, Japan

6. Department of Biostatistics, Institute of Medicine, University of Tsukuba, Tsukuba 305-8575, Japan

Abstract

Background and Objectives: Bedridden patients are at a high risk of venous thromboembolism (VTE). Passive devices such as elastic compression stockings and intermittent pneumatic compression are common. Leg exercise apparatus (LEX) is an active device designed to prevent VTE by effectively contracting the soleus muscle and is therefore expected to be effective in preventing disuse of the lower limbs. However, few studies have been conducted on the kinematic properties of LEX. Therefore, this study aimed to compare the exercise characteristics of LEX with those of an ergometer, which is commonly used as a lower-limb exercise device, and examine its effect on the two domains of muscle activity and circulatory dynamics. Materials and Methods: This study used a crossover design in which each participant performed both exercises to evaluate the exercise characteristics of each device. Fifteen healthy adults performed exercises with LEX and an ergometer (Terasu Erugo, SDG Co., Ltd., Tokyo, Japan) for 5 min each and rested for 10 min after each exercise. Muscle activity was measured using surface electromyography (Clinical DTS, Noraxon, Scottsdale, AZ, USA), and circulatory dynamics were recorded using a non-invasive impedance cardiac output meter (Physioflow Enduro, Manatec Biomedical, Paris, France). The primary outcome was the mean percentage of maximum voluntary contraction (%MVC) of the soleus muscle during exercise. Results: The mean %MVC of the soleus muscle was significantly higher in the LEX group, whereas no significant differences were observed across the periods and sequences. Heart rate, stroke volume, and cardiac output increased during exercise and decreased thereafter; however, the differences between the devices were not significant. Conclusions: LEX may not only have a higher thromboprophylaxis effect, but also a higher effect on preventing muscle atrophy as a lower-extremity exercise device. Additionally, LEX could potentially be used safely in patients who need to be monitored for changes in circulatory dynamics.

Publisher

MDPI AG

Reference18 articles.

1. (2024, June 28). Venous Thromboembolism (Blood Clots): Data and Statistics on Venous Thromboembolism, Available online: https://www.cdc.gov/blood-clots/data-research/facts-stats/index.html.

2. Overview of venous thromboembolism;Phillippe;Am. J. Manag. Care,2017

3. Prevention of VTE in patients having major orthopedic surgery;Francis;J. Thromb. Thrombolysis,2013

4. Kushner, A., West, W.P., Khan Suheb, M.Z., and Pillarisetty, L.S. (2024, June 28). Virchow Triad, StatPearls [Internet], Available online: https://www.ncbi.nlm.nih.gov/books/NBK539697/.

5. Impact of re-sistance exercise during bed rest on skeletal muscle sarcopenia and myosin isoform distribution;Bamman;J. Appl. Physiol.,1998

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