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临床试验/NCT07506499
NCT07506499招募中不适用

Effect of Cardiac Rehabilitation in Patients With Decompensated Heart Failure

Beni-Suef University1 个研究点 分布在 1 个国家目标入组 135 人开始时间: 2026年4月1日最近更新:
适应症
干预措施

试验速览

阶段
不适用
状态
招募中
入组人数
135
试验地点
1
主要终点
Cardiac Function (Ejection Fraction)

研究概览

简要总结

Heart failure is a common clinical condition that often leads to reduced exercise tolerance, shortness of breath, and poor quality of life. Many patients with heart failure also develop weakness of the inspiratory muscles, which contributes to limited physical activity and worsening functional capacity. Inspiratory muscle training (IMT) has been suggested as a useful rehabilitation method to improve respiratory muscle strength and exercise tolerance. In addition, functional electrical stimulation (FES) of the lower limb muscles may help activate skeletal muscles and improve functional performance in patients who cannot tolerate conventional exercise.

This randomized controlled study aims to investigate the effect of combining inspiratory muscle training with functional electrical stimulation of the lower limbs in patients with decompensated heart failure. A total of 135 hospitalized patients with decompensated heart failure will be recruited from the Cardiology Department at Beni-Suef University Hospital and randomly assigned into three groups. Group A (45 patients) will receive routine medical treatment in addition to inspiratory muscle training combined with functional electrical stimulation. Group B (45 patients) will receive routine medical treatment with inspiratory muscle training only. Group C (45 patients) will receive routine medical treatment alone.

The intervention will start during hospitalization and will continue for four weeks. The study will evaluate the effects of these interventions on cardiac function, inspiratory muscle strength, and functional capacity as primary outcomes. Secondary outcomes will include dyspnea severity, quality of life, heart rate, oxygen saturation, hand grip strength, and maximum expiratory pressure. The findings of this study may help clarify the potential role of combining inspiratory muscle training with functional electrical stimulation as part of cardiac rehabilitation in patients with decompensated heart failure.

详细描述

Heart failure is a progressive clinical syndrome in which the heart is unable to maintain adequate cardiac output to meet the body's metabolic demands. Decompensated heart failure represents an acute or subacute deterioration requiring hospitalization and is associated with significant morbidity, prolonged hospital stays, and high readmission rates. Beyond the primary cardiac impairment, patients with decompensated heart failure commonly develop secondary systemic consequences, including respiratory muscle dysfunction and peripheral skeletal muscle abnormalities, both of which contribute independently to exercise intolerance, symptom burden, and poor functional outcomes.

Inspiratory muscle weakness has been identified in approximately 30-50% of patients with heart failure and is believed to result from a combination of diaphragmatic underperfusion, chronic hyperventilation, and systemic inflammatory and catabolic processes. This weakness leads to increased work of breathing, ventilatory inefficiency, and heightened perception of dyspnea, creating a vicious cycle that further limits physical activity and accelerates functional decline. Inspiratory muscle training (IMT) targets this mechanism by applying progressive resistive loading to the inspiratory muscles, promoting improvements in diaphragmatic strength, ventilatory efficiency, and autonomic modulation. Several studies have demonstrated favorable effects of IMT on inspiratory muscle performance, exercise capacity, and quality of life in stable heart failure populations; however, evidence regarding its application during the acute decompensated phase remains limited.

Peripheral skeletal muscle dysfunction in heart failure is characterized by a shift from type I oxidative to type II glycolytic muscle fibers, reduced mitochondrial density, impaired oxygen utilization, and muscle atrophy driven by disuse, neurohormonal activation, and systemic inflammation. These changes are particularly pronounced during periods of decompensation and prolonged bed rest. Functional electrical stimulation (FES) offers a passive approach to muscle activation that bypasses the cardiovascular demand of voluntary exercise, making it a potentially suitable intervention for hemodynamically unstable or severely deconditioned patients. FES-induced muscle contractions have been shown to improve local blood flow, enhance oxidative enzyme activity, and promote favorable fiber-type remodeling in heart failure populations.

Despite the established individual benefits of IMT and FES, no study to date has investigated the combined application of these two modalities in patients hospitalized with decompensated heart failure. The physiological rationale for combining them is based on the concept of addressing both central (respiratory muscle) and peripheral (skeletal muscle) components of exercise intolerance simultaneously, which may produce additive or synergistic improvements in functional capacity and clinical outcomes compared to either intervention alone.

This study hypothesizes that the addition of combined IMT and FES to routine medical treatment will result in greater improvements in cardiac function, inspiratory muscle strength, and functional capacity compared to IMT alone or medical treatment alone in patients with decompensated heart failure. The findings may contribute to the development of early, comprehensive cardiac rehabilitation strategies for this high-risk population.

研究设计

研究类型
Interventional
分配方式
Randomized
干预模型
Parallel
主要目的
Treatment
盲法
None

入排标准

年龄范围
45 Years 至 65 Years(Adult, Older Adult)
性别
All
接受健康志愿者

入选标准

  • Aged from 45 to 65 years old
  • Both sexes
  • Hospitalized heart failure patients with ejection fraction < 40%
  • Conscious and cooperative
  • Able to participate in training actively

排除标准

  • Acute major cardiovascular events (e.g., acute coronary syndrome, stroke, or pulmonary embolism)
  • Uncontrolled life-threatening arrhythmias
  • Severe valvular heart disease requiring urgent surgery
  • Pregnancy
  • End-stage renal disease requiring dialysis
  • Significant pulmonary diseases such as pulmonary arterial hypertension,
  • Implanted pacemaker
  • Clinically significant peripheral vascular disease
  • Severe anemia
  • Exercise-induced angina or ST-segment changes

研究组 & 干预措施

IMT Group

Active Comparator

Participants receive routine medical treatment combined with inspiratory muscle training.

干预措施: Inspiratory Muscle Trainer (Device)

IMT + FES Group

Experimental

Participants receive routine medical treatment combined with inspiratory muscle training and functional electrical stimulation of the lower limb muscles as part of a cardiac rehabilitation program.

干预措施: Functional Electrical Stimulation (Device)

IMT Group

Active Comparator

Participants receive routine medical treatment combined with inspiratory muscle training.

干预措施: Standard medical treatment (Other)

Control Group

Active Comparator

Participants receive routine medical treatment only.

干预措施: Standard medical treatment (Other)

IMT + FES Group

Experimental

Participants receive routine medical treatment combined with inspiratory muscle training and functional electrical stimulation of the lower limb muscles as part of a cardiac rehabilitation program.

干预措施: Standard medical treatment (Other)

IMT + FES Group

Experimental

Participants receive routine medical treatment combined with inspiratory muscle training and functional electrical stimulation of the lower limb muscles as part of a cardiac rehabilitation program.

干预措施: Inspiratory Muscle Trainer (Device)

结局指标

主要结局

Cardiac Function (Ejection Fraction)

时间窗: Baseline and 4 weeks

Cardiac function will be assessed using echocardiography to measure left ventricular ejection fraction.

Maximum Inspiratory Pressure

时间窗: Baseline and 4 weeks

Inspiratory muscle strength will be assessed by measuring maximum inspiratory pressure (MIP) using a maximum inspiratory pressure meter.

Functional capacity (6-minute walk test)

时间窗: Baseline and 4 weeks

Functional capacity will be assessed using the 6-minute walk test (6MWT) by measuring the distance walked in meters.

次要结局

  • Dyspnea Severity(Baseline and 4 weeks)
  • Quality of Life (Minnesota Living with Heart Failure Questionnaire Score)(Baseline and 4 weeks)
  • Heart Rate(Baseline and 4 weeks)
  • Hand Grip Strength(Baseline and 4 weeks)
  • Maximum Expiratory Pressure(Baseline and 4 weeks)
  • Length of Hospital Stay(During the hospitalization period (Up to 7 days))
  • Estimated peak oxygen uptake (VO₂max)(Baseline and 4 weeks)
  • Oxygen Saturation (SpO₂)(Baseline and 4 weeks)
  • Functional capacity (6-minute walk test)(Baseline and 4 weeks)

研究者

申办方类型
Other
责任方
Principal Investigator
主要研究者

Salma Abdelfattah Mostafa Elsalhy

Teaching Assistant

Beni-Suef University

研究点 (1)

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