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Exercise and Pain Sensitivity

Exercise and Alterations in Pain Sensitivity

Status
Terminated
Phases
NA
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT01351558
Enrollment
33
Registered
2011-05-11
Start date
2011-05-31
Completion date
2012-03-31
Last updated
2012-10-05

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

Conditions

Knee Pain

Brief summary

There is ample evidence that exercise therapy is beneficial with respect to pain in patients with osteoarthritis of the knee. However, the pain relieving mechanisms are unknown. To enhance the efficacy of exercise therapy a deeper understanding of the involved mechanisms is needed. Different exercise types may affect the pain sensitivity differently. It is hypothesized that non-specific exercises (i.e. exercises that does not involve the knee) reduces the processing of pain in the central nervous system (central sensitivity) to knee joint pain in healthy subjects. It is also hypothesized that exercises that involve the knee (i.e. specific knee exercises) reduce the sensitivity of pain receptors in the knee (peripheral sensitivity) in healthy subjects. Healthy volunteers are recruited and randomised to one of four interventions: 1: Muscle strengthening exercises involving the thigh muscles; 2: Muscle strengthening exercises involving the shoulder muscles; 3: Cardio-vascular fitness exercises; or 4: Control (no exercises). The active interventions include exercises three times per week for 12 weeks. Pain sensitivity and a range of explanatory variables is measured before the interventions, after 4 weeks and after 12 weeks.

Interventions

OTHERKnee muscle strengthening exercises

Muscle strengthening exercises of the quadriceps and hamstring muscles will be performed based on a standard muscle strengthening exercise paradigm: 3 sets with 6-8 repetitions (corresponding to approximately 80% repetition maximum (RM)) will be performed. The training load will be progressed by means of weekly estimates of muscle strength to ensure a constant load of 80% RM. The exercises will be supervised

OTHERUpper extremity strengthening exercises

Muscle strengthening exercises of the upper amrs and shoulder girdle will be performed based on a standard muscle strengthening exercise paradigm: 3 sets with 6-8 repetitions (corresponding to approximately 80% repetition maximum (RM)) will be performed. The training load will be progressed by means of weekly estimates of muscle strength to ensure a constant load of 80% RM. The exercises will be supervised

OTHERCardiovascular fitness exercises

Cardiovascular fitness exercises encompass circuit training including exercises on (but not limited to): ergometer cycles, treadmills (running), and cross-trainers. The exercise intensity is aiming at exercises within 60-85% of maximum heart rate (defined as 220 - age). The heart rate is monitored using a standard heart rate monitor. The exercises will be supervised

Sponsors

Henning Bliddal
Lead SponsorOTHER

Study design

Allocation
RANDOMIZED
Intervention model
PARALLEL
Primary purpose
BASIC_SCIENCE
Masking
DOUBLE (Investigator, Outcomes Assessor)

Eligibility

Sex/Gender
ALL
Age
18 Years to 35 Years
Healthy volunteers
Yes

Inclusion criteria

* Age between 18 and 35 years * Untrained (i.e. less than 2 hours of organised exercise per week in the last 6 months - physical activity related to transportation (e.g. bicycling) is not included) * Generally healthy according a medical exam at screening, history * Willing and able to participate in all measurements * Willing and able to attend all training sessions * Willing to keep the habitual activity and amount of training constant (ie screening activity and training volume). * 20 ≤ body mass index (BMI) ≤ 28 kg/m2 * Speak, read and write Danish

Exclusion criteria

* Pregnant or breastfeeding * Current or previous symptoms of autoimmune disease (eg, inflammatory bowel disease, multiple sclerosis, lupus, rheumatoid arthritis) * Planned surgery during the study period * Current or former musculoskeletal injuries or illnesses, including but not confined to: * Ligament Injuries * Meniscus Injuries * Osteoarthritis * Patellofemoral Pain Syndrome * Backache * Neck pain * tendinopathy * Current or past diagnosis, signs or symptoms of significant cardiovascular disease, including but not limited to: * Ischemic heart disease * Arteriosclerosis * Medical conditions that contraindicate exercise, including but not limited to: * Chronic or congenital heart disease * Asthma * Chronic Obstructive Pulmonary Disease * Past or current diagnosis, signs or symptoms of significant neurological disease, in-incl. but not limited to: * Blood clot in brain * Stroke * Clinically significant head trauma within the last year * Peripheral neuropathy * Epilepsy or seizures * Impaired balance * Alcohol or drug abuse within the past 5 years * Past or current diagnosis, signs or symptoms of major psychiatric disorder * Regional pain syndromes like fibromyalgia * Regional pain caused by lumbar nerve root or cervical radiculopathy with or at risk for developing it

Design outcomes

Primary

MeasureTime frame
Change in pressure pain sensitivityBaseline, and after 12 weeks of exercise

Secondary

MeasureTime frameDescription
Change in muscle strengthbaseline and after 12 weeksMuscle strength is measured in knee extension and flexion and in arm extension and flexion (bench press and pull)
Change in cardiovascular fitnessbaseline after 4 weeks and after 12 weeksWatt max test is performed on a bicycle ergometer to estimate the maximal oxygen uptake velocity
Change in baroreflex sensitivitybaseline after 4 weeks and after 12 weeksHeart rate and blood pressure variability is measured during rest and during quiet standing.

Countries

Denmark

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Mar 10, 2026