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Relation of leg muscle oxygen availability to leg muscle volume and leg muscle fitness during incremental exercise in patients with heart failure.

Relation of leg muscle oxygen availability to leg muscle volume and leg muscle fitness during incremental exercise in patients with heart failure.

Status
Recruiting
Phases
Unknown
Study type
Interventional
Source
JPRN
Registry ID
JPRN-jRCT1030230487
Enrollment
125
Registered
2023-12-04
Start date
2024-06-19
Completion date
Unknown
Last updated
2026-06-29

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Heart failure

Interventions

Measurement of cardiac output, cardiac output, cardiac index, and muscle oxygen saturation during cardiopulmonary exercise testing. To measure muscle oxygen saturation during the measurement of lower

Sponsors

Kazuya Yoshizawa
Lead Sponsor

Eligibility

Sex/Gender
Male

Inclusion criteria

Inclusion criteria: Male heart failure patients aged 40 years or older who have been diagnosed with heart failure and are scheduled to undergo cardiopulmonary exercise testing in an outpatient setting will be included in the study. Diagnostic criteria for heart failure will be in accordance with the diagnostic criteria for patients with chronic heart failure in the Guidelines for the Diagnosis and Management of Acute and Chronic Heart Failure (2017 revised edition). The severity of heart failure will be defined as stage C of the AHA/ACC (American Heart Association / American College of Cardiology) stage classification, i.e., symptomatic heart failure.

Exclusion criteria

Exclusion criteria: The following are contraindications to the exercise stress test as outlined by the American College of Sports Medicine. These are: critical myocardial ischemia or acute myocardial infarction (within 2 days of onset), recent nonsignificant resting ECG changes suggestive of other acute cardiac events, unstable angina, symptomatic or poorly controlled arrhythmia resulting in hemodynamic abnormalities, symptomatic severe aortic stenosis, poorly controlled symptomatic heart failure, acute pulmonary embolism or pulmonary infarction, acute myocarditis or pericarditis, dissecting aortic aneurysm or suspected aortic aneurysm, acute pulmonary embolism, or pulmonary infarction. Symptomatic severe aortic valve stenosis, symptomatic uncontrolled heart failure, acute pulmonary embolism or pulmonary infarction, acute myocarditis or pericarditis, dissecting aortic aneurysm or its suspicion, acute infection with fever, body pain and lymph gland swelling. Patients with orthopedic or central nervous system diseases that make it difficult to perform exercise stress tests or muscle fitness measurements. Patients with cognitive impairment that makes it difficult to perform exercise stress tests or skeletal muscle measurements. Overweight (>100 kg) that exceeds the maximum permissible weight of the measuring device. Those who have difficulty in applying ECG stickers with sufficient fixation due to hypersensitivity of the skin. Those who have difficulty in assessing subjective difficulty during exercise due to severe vision loss or blindness. Patients who have undergone hemodialysis Those who have undergone surgical operation within 6 months. Those who have undergone surgical procedures in the past and have any metal in their body. Persons who could not give consent to participate in this study.

Design outcomes

Primary

MeasureTime frame
Lower extremity muscle oxygen utilization capacity (lower extremity muscle oxygen saturation, arterial-mixed venous oxygen difference) during cardiopulmonary exercise testing. Lower Limb Muscle Strength Lower limb muscle endurance

Secondary

MeasureTime frame
Difficulties in activities of daily living lower limb muscle mass

Contacts

Public ContactNemoto Shinji

St. marianna university school of medicine

shinji4df@marianna-u.ac.jp+81-45-985-6586

Outcome results

None listed

Source: JPRN (via WHO ICTRP) · Data processed: Jul 3, 2026