Effect of low-frequency neuromuscular electrical stimulation combined with passive cycle ergometry on hemodynamics in healthy adults.

IF 2.2 3区 医学 Q3 PHYSIOLOGY
Shinya Matsushima, Ai Hirasawa, Rina Suzuki, Hiroyasu Murata, Masahiko Kimura, Shigeki Shibata
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Abstract

There have been few studies that have examined hemodynamic responses to low-frequency neuromuscular electrical stimulation (LF-NMES), and the effects of combining passive cycle ergometry are still unclear. The purpose of this study was to examine the effects of a combination of LF-NMES and passive cycle ergometry on hemodynamic responses with a primary focus on the Fick principle in healthy adults. A randomized, crossover trial was conducted to evaluate the responses to three types of supine exercises (LF-NMES alone, LF-NMES with passive cycle ergometry, and voluntary cycle ergometry) adjusted to the same exercise intensity as the oxygen consumption of 14 mL/kg/min in 13 healthy adult men. Blood pressure, heart rate, blood lactate concentration, stroke volume (SV), cardiac output (CO), and left ventricular end-diastolic volume (LVEDV) were measured during each exercise in all subjects. The arterial-venous oxygenation difference (A-V̇o2 difference) was calculated based on Fick's equation. LVEDV, SV, and CO were lower, and the A-V̇o2 difference and blood lactate concentration were higher in LF-NMES alone than those in voluntary cycle ergometry and LF-NMES with passive cycle ergometry (P < 0.05). The blood lactate concentration was lower in LF-NMES with passive cycle ergometry than that in LF-NMES alone, but slightly higher than that in voluntary cycle ergometry (P < 0.05). Hemodynamic and metabolic responses of exercise with LF-NMES alone seemed consistent with insufficient peripheral perfusion based on the elevation of A-V̇o2 difference and blood lactate concentration. The findings suggest that combining passive cycle ergometry with LF-NMES improves the insufficient peripheral perfusion induced by LF-NMES alone.NEW & NOTEWORTHY This is the first study to evaluate cardiac output, oxygen consumption, and A-V̇o2 difference during LF-NMES of endurance exercise modality. LF-NMES alone may not demonstrate hemodynamic responses induced by voluntary endurance exercise, however, demonstrates those when combined with passive cycle ergometry. LF-NMES with passive cycle ergometry may be a more effective approach in cardiac rehabilitation for patients without the ability of voluntary exercise because it may increase cardiac output and venous return as represented by the LVEDV.

低频神经肌肉电刺激结合被动循环测重法对健康成年人血液动力学的影响
背景:目前很少有研究对低频神经肌肉电刺激(LF-NMES)的血液动力学反应进行检查,而结合被动循环测重法的效果尚不清楚。本研究的目的是研究低频神经肌肉电刺激和被动循环测重相结合对血液动力学反应的影响,主要关注健康成年人的菲克原理。研究方法我们进行了一项随机交叉试验,以评估 13 名健康成年男性对三种仰卧运动(单独 LF-NMES、LF-NMES 与被动循环测高法和自主循环测高法)的反应,这三种运动的运动强度与 14 mL/kg/min 的耗氧量相同。所有受试者在每次运动时都测量了血压、心率、血乳酸浓度、每搏量(SV)、心输出量(CO)和左心室舒张末期容积(LVEDV)。根据菲克方程计算出动静脉氧合差值(A-VO2 差值)。结果单独进行 LF-NMES 运动时,LVEDV、SV 和 CO 较低,A-VO2 差值和血乳酸浓度高于自主循环测高法和 LF-NMES 加被动循环测高法(p 结论:根据 A-VO2 差值和血乳酸浓度的升高,单用 LF-NMES 进行运动时的血流动力学和代谢反应似乎与外周灌注不足一致。研究结果表明,将被动循环老化测定法与 LF-NMES 结合使用可改善单用 LF-NMES 引起的外周灌注不足。
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来源期刊
CiteScore
5.30
自引率
3.60%
发文量
145
审稿时长
2 months
期刊介绍: The American Journal of Physiology-Regulatory, Integrative and Comparative Physiology publishes original investigations that illuminate normal or abnormal regulation and integration of physiological mechanisms at all levels of biological organization, ranging from molecules to humans, including clinical investigations. Major areas of emphasis include regulation in genetically modified animals; model organisms; development and tissue plasticity; neurohumoral control of circulation and hypertension; local control of circulation; cardiac and renal integration; thirst and volume, electrolyte homeostasis; glucose homeostasis and energy balance; appetite and obesity; inflammation and cytokines; integrative physiology of pregnancy-parturition-lactation; and thermoregulation and adaptations to exercise and environmental stress.
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