Exercise is an important contributor to general health and is considered a potential remedy for chronic diseases. This is in strong contrast with the observation that in most myalgic encephalomyelitis (ME/CFS) patients exercise aggravates their symptoms. Recently, post-exertional malaise (PEM) is defined as the key symptom of ME/CFS. The etiology and pathophysiological mechanisms underlying ME/CFS are still unknown and objective diagnostic criteria are not available. Various hypotheses are postulated including disorders of several organ systems but the heterogenous presentation of symptoms in patients, and the multisystem deficits complicate reaching an all-encompassing hypothesis. It seems therefore reasonable to focus on the key symptom, i.e., PEM. PEM can be induced by minor cognitive or physical exertion and can be assessed with questionnaires. Acute physical activity triggers complex cardiovascular, metabolic, and molecular responses and for ME/CFS, hence it is important to understand the relation between these acute processes and the prolonged presentation of aggravated symptoms (PEM). We therefore want to measure metabolites, cardiovascular responses, cognitive performance, muscle force and fatigability in 50 patients and 50 controls matched on group level for sex, age, and activity. To follow changes in these parameters we perform time-series analysis, including data obtained before, during and after task performance. Besides understanding these interactions, it is also essential to understand how these acute and prolonged responses affect behaviour and perception.
Age range
18 Years – 65 Years
Sex
ALL
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Cardiovascular parameters (Heart rate and blood pressure)
Timeframe: 2023-2027
Short maximal voluntary contraction
Timeframe: 2023-2027
Submaximal voluntary contractions (20%,40%, 60% of the short MVC)
Timeframe: 2023-2027
Sustained maximal voluntary contraction of the FDI
Timeframe: 2023-2027
Cognitive parameters (stroop task)
Timeframe: 2023-2027
BOLD activation
Timeframe: 2023-2027
Arterial Spin Labeling (ASL)
Timeframe: 2023-2027
Cerebral oxygenation (near infrared spectroscopy)
Timeframe: 2023-2027