This study aimed at determining the short- (16 weeks) and long-term (36 weeks) health and physical fitness effects and adherence of recreational team handball training for postmenopausal women without previous experience with the sport. The investigators hypothesized that short-term recreational team handball training would result in positive health and physical fitness adaptations and that the health and physical fitness improvements achieved after the first 16 weeks would be maintained or further improved at the long-term. Moreover, the investigators also hypothesized that the adherence to this exercise mode would be maintained throughout the 36 weeks (long-term) compared to the first 16 weeks (short-term).
Study Type
INTERVENTIONAL
Allocation
RANDOMIZED
Purpose
PREVENTION
Masking
SINGLE
Enrollment
80
Two to three weekly sessions of recreational team handball training for 36 weeks. Each 60-min session started with a standardised warm-up (including running, coordination, strength, flexibility, and balance exercises) followed by three 15-min periods of recreational team handball matches, interspersed by 2-min breaks, played as small-sided games (4v4, 5v5 or 6v6). The training sessions were performed on an indoor team handball court (40x20 m) adjusted to result in 34-36 m2 per player. During the matches, the participants rotated positions every 3 min in a random order, including the goalkeeper and no exclusions or substitutions were applied.
University of Maia
Maia, Porto District, Portugal
Between group differences in peak oxygen uptake at week 16
Determined by pulmonary gas exchange measurements, during an incremental treadmill test until voluntary exhaustion.
Time frame: Week 16
Between group differences in peak oxygen uptake at week 36
Determined by pulmonary gas exchange measurements, during an incremental treadmill test until voluntary exhaustion.
Time frame: Week 36
Changes from baseline in peak oxygen uptake at week 16
Determined by pulmonary gas exchange measurements, during an incremental treadmill test until voluntary exhaustion.
Time frame: Baseline and week 16
Changes from baseline in peak oxygen uptake at week 36
Determined by pulmonary gas exchange measurements, during an incremental treadmill test until voluntary exhaustion.
Time frame: Baseline and week 36
Changes from week 16 in peak oxygen uptake at week 36
Determined by pulmonary gas exchange measurements, during an incremental treadmill test until voluntary exhaustion.
Time frame: Week 16 and week 36
Between group differences in resting heart rate at week 16
Determined by an automatic upper arm blood pressure monitor according to standardized procedures.
Time frame: Week 16
Between group differences in resting heart rate at week 36
Determined by an automatic upper arm blood pressure monitor according to standardized procedures.
Time frame: Week 36
Changes from baseline in resting heart rate at week 16
Determined by an automatic upper arm blood pressure monitor according to standardized procedures.
Time frame: Baseline and week 16
Changes from baseline in resting heart rate at week 36
Determined by an automatic upper arm blood pressure monitor according to standardized procedures.
Time frame: Baseline and week 36
Changes from week 16 in resting heart rate at week 36
Determined by an automatic upper arm blood pressure monitor according to standardized procedures.
Time frame: Week 16 and week 36
Between group differences in body mass at week 16
Determined by whole-body dual- energy X-ray absorptiometry following standard procedures.
Time frame: Week 16
Between group differences in body mass at week 36
Determined by whole-body dual- energy X-ray absorptiometry following standard procedures.
Time frame: Week 36
Changes from baseline in body mass at week 16
Determined by whole-body dual- energy X-ray absorptiometry following standard procedures.
Time frame: Baseline and week 16
Changes from baseline in body mass at week 36
Determined by whole-body dual- energy X-ray absorptiometry following standard procedures.
Time frame: Baseline and week 36
Changes from week 16 in body mass at week 36
Determined by whole-body dual- energy X-ray absorptiometry following standard procedures.
Time frame: Week 16 and week 36
Between group differences in fat mass at week 16
Determined by whole-body dual- energy X-ray absorptiometry following standard procedures.
Time frame: Week 16
Between group differences in fat mass at week 36
Determined by whole-body dual- energy X-ray absorptiometry following standard procedures.
Time frame: Week 36
Changes from baseline in fat mass at week 16
Determined by whole-body dual- energy X-ray absorptiometry following standard procedures.
Time frame: Baseline and week 16
Changes from baseline in fat mass at week 36
Determined by whole-body dual- energy X-ray absorptiometry following standard procedures.
Time frame: Baseline and week 36
Changes from week 16 in fat mass at week 36
Determined by whole-body dual- energy X-ray absorptiometry following standard procedures.
Time frame: Week 16 and week 36
Between group differences in lean mass at week 16
Determined by whole-body dual- energy X-ray absorptiometry following standard procedures.
Time frame: Week 16
Between group differences in lean mass at week 36
Determined by whole-body dual- energy X-ray absorptiometry following standard procedures.
Time frame: Week 36
Changes from baseline in lean mass at week 16
Determined by whole-body dual- energy X-ray absorptiometry following standard procedures.
Time frame: Baseline and week 16
Changes from baseline in lean mass at week 36
Determined by whole-body dual- energy X-ray absorptiometry following standard procedures.
Time frame: Baseline and week 36
Changes from week 16 in lean mass at week 36
Determined by whole-body dual- energy X-ray absorptiometry following standard procedures.
Time frame: Week 16 and week 36
Between group differences in lumbar spine bone mineral density at week 16
Determined by dual- energy X-ray absorptiometry regional scans following standard procedures.
Time frame: Week 16
Between group differences in lumbar spine bone mineral density at week 36
Determined by dual- energy X-ray absorptiometry regional scans following standard procedures.
Time frame: Week 36
Changes from baseline in lumbar spine bone mineral density at week 16
Determined by dual- energy X-ray absorptiometry regional scans following standard procedures.
Time frame: Baseline and week 16
Changes from baseline in lumbar spine bone mineral density at week 36
Determined by dual- energy X-ray absorptiometry regional scans following standard procedures.
Time frame: Baseline and week 36
Changes from week 16 in lumbar spine bone mineral density at week 36
Determined by dual- energy X-ray absorptiometry regional scans following standard procedures.
Time frame: Week 16 and week 36
Between group differences in dominant femur bone mineral density at week 16
Determined by dual- energy X-ray absorptiometry regional scans following standard procedures.
Time frame: Week 16
Between group differences in dominant femur bone mineral density at week 36
Determined by dual- energy X-ray absorptiometry regional scans following standard procedures.
Time frame: Week 36
Changes from baseline in dominant femur bone mineral density at week 16
Determined by dual- energy X-ray absorptiometry regional scans following standard procedures.
Time frame: Baseline and week 16
Changes from baseline in dominant femur bone mineral density at week 36
Determined by dual- energy X-ray absorptiometry regional scans following standard procedures.
Time frame: Baseline and week 36
Changes from week 16 in dominant femur bone mineral density at week 36
Determined by dual- energy X-ray absorptiometry regional scans following standard procedures.
Time frame: Week 16 and week 36
Between group differences in dominant femoral neck bone mineral density at week 16
Determined by dual- energy X-ray absorptiometry regional scans following standard procedures.
Time frame: Week 16
Between group differences in dominant femoral neck bone mineral density at week 36
Determined by dual- energy X-ray absorptiometry regional scans following standard procedures.
Time frame: Week 36
Changes from baseline in dominant femoral neck bone mineral density at week 16
Determined by dual- energy X-ray absorptiometry regional scans following standard procedures.
Time frame: Baseline and week 16
Changes from baseline in dominant femoral neck bone mineral density at week 36
Determined by dual- energy X-ray absorptiometry regional scans following standard procedures.
Time frame: Baseline and week 36
Changes from week 16 in dominant femoral neck bone mineral density at week 36
Determined by dual- energy X-ray absorptiometry regional scans following standard procedures.
Time frame: Week 16 and week 36
Between group differences in lumbar spine bone mineral content at week 16
Determined by dual- energy X-ray absorptiometry regional scans following standard procedures.
Time frame: Week 16
Between group differences in lumbar spine bone mineral content at week 36
Determined by dual- energy X-ray absorptiometry regional scans following standard procedures.
Time frame: Week 36
Changes from baseline in lumbar spine bone mineral content at week 16
Determined by dual- energy X-ray absorptiometry regional scans following standard procedures.
Time frame: Baseline and week 16
Changes from baseline in lumbar spine bone mineral content at week 36
Determined by dual- energy X-ray absorptiometry regional scans following standard procedures.
Time frame: Baseline and week 36
Changes from week 16 in lumbar spine bone mineral content at week 36
Determined by dual- energy X-ray absorptiometry regional scans following standard procedures.
Time frame: Week 16 and week 36
Between group differences in dominant femur bone mineral content at week 16
Determined by dual- energy X-ray absorptiometry regional scans following standard procedures.
Time frame: Week 16
Between group differences in dominant femur bone mineral content at week 36
Determined by dual- energy X-ray absorptiometry regional scans following standard procedures.
Time frame: Week 36
Changes from baseline in dominant femur bone mineral content at week 16
Determined by dual- energy X-ray absorptiometry regional scans following standard procedures.
Time frame: Baseline and week 16
Changes from baseline in dominant femur bone mineral content at week 36
Determined by dual- energy X-ray absorptiometry regional scans following standard procedures.
Time frame: Baseline and week 36
Changes from week 16 in dominant femur bone mineral content at week 36
Determined by dual- energy X-ray absorptiometry regional scans following standard procedures.
Time frame: Week 16 and week 36
Between group differences in dominant femoral neck bone mineral content at week 16
Determined by dual- energy X-ray absorptiometry regional scans following standard procedures.
Time frame: Week 16
Between group differences in dominant femoral neck bone mineral content at week 36
Determined by dual- energy X-ray absorptiometry regional scans following standard procedures.
Time frame: Week 36
Changes from baseline in dominant femoral neck bone mineral content at week 16
Determined by dual- energy X-ray absorptiometry regional scans following standard procedures.
Time frame: Baseline and week 16
Changes from baseline in dominant femoral neck bone mineral content at week 36
Determined by dual- energy X-ray absorptiometry regional scans following standard procedures.
Time frame: Baseline and week 36
Changes from week 16 in dominant femoral neck bone mineral content at week 36
Determined by dual- energy X-ray absorptiometry regional scans following standard procedures.
Time frame: Week 16 and week 36
Between group differences in osteocalcin at week 16
Determined by chemiluminescence method using a fully automated immunoassay system.
Time frame: Week 16
Between group differences in osteocalcin at week 36
Determined by chemiluminescence method using a fully automated immunoassay system.
Time frame: Week 36
Changes from baseline in osteocalcin at week 16
Determined by chemiluminescence method using a fully automated immunoassay system.
Time frame: Baseline and week 16
Changes from baseline in osteocalcin at week 36
Determined by chemiluminescence method using a fully automated immunoassay system.
Time frame: Baseline and week 36
Changes from week 16 in osteocalcin at week 36
Determined by chemiluminescence method using a fully automated immunoassay system.
Time frame: Week 16 and week 36
Between group differences in procollagen type-1 amino-terminal propeptide at week 16
Determined by chemiluminescence method using a fully automated immunoassay system.
Time frame: Week 16
Between group differences in procollagen type-1 amino-terminal propeptide at week 36
Determined by chemiluminescence method using a fully automated immunoassay system.
Time frame: Week 36
Changes from baseline in procollagen type-1 amino-terminal propeptide at week 16
Determined by chemiluminescence method using a fully automated immunoassay system.
Time frame: Baseline and week 16
Changes from baseline in procollagen type-1 amino-terminal propeptide at week 36
Determined by chemiluminescence method using a fully automated immunoassay system.
Time frame: Baseline and week 36
Changes from week 16 in procollagen type-1 amino-terminal propeptide at week 36
Determined by chemiluminescence method using a fully automated immunoassay system.
Time frame: Week 16 and week 36
Between group differences in carboxy-terminal type-1 collagen crosslinks at week 16
Determined by chemiluminescence method using a fully automated immunoassay system.
Time frame: Week 16
Between group differences in carboxy-terminal type-1 collagen crosslinks at week 36
Determined by chemiluminescence method using a fully automated immunoassay system.
Time frame: Week 36
Changes from baseline in carboxy-terminal type-1 collagen crosslinks at week 16
Determined by chemiluminescence method using a fully automated immunoassay system.
Time frame: Baseline and week 16
Changes from baseline in carboxy-terminal type-1 collagen crosslinks at week 36
Determined by chemiluminescence method using a fully automated immunoassay system.
Time frame: Baseline and week 36
Changes from week 16 in carboxy-terminal type-1 collagen crosslinks at week 36
Determined by chemiluminescence method using a fully automated immunoassay system.
Time frame: Week 16 and week 36
Between group differences in sclerostin at week 16
Determined by chemiluminescence method using a fully automated immunoassay system.
Time frame: Week 16
Between group differences in sclerostin at week 36
Determined by chemiluminescence method using a fully automated immunoassay system.
Time frame: Week 36
Changes from baseline in sclerostin at week 16
Determined by chemiluminescence method using a fully automated immunoassay system.
Time frame: Baseline and week 16
Changes from baseline in sclerostin at week 36
Determined by chemiluminescence method using a fully automated immunoassay system.
Time frame: Baseline and week 36
Changes from week 16 in sclerostin at week 36
Determined by chemiluminescence method using a fully automated immunoassay system.
Time frame: Week 16 and week 36
Between group differences in isometric knee extension peak torque at week 16
Determined by a Biodex isokinetic dynamometer, during a isometric knee extension contraction
Time frame: Week 16
Between group differences in isometric knee extension peak torque at week 36
Determined by a Biodex isokinetic dynamometer, during a isometric knee extension contraction
Time frame: Week 36
Changes from baseline in isometric knee extension peak torque at week 16
Determined by a Biodex isokinetic dynamometer, during a isometric knee extension contraction
Time frame: Baseline and week 16
Changes from baseline in isometric knee extension peak torque at week 36
Determined by a Biodex isokinetic dynamometer, during a isometric knee extension contraction
Time frame: Baseline and week 36
Changes from week 16 in isometric knee extension peak torque at week 36
Determined by a Biodex isokinetic dynamometer, during a isometric knee extension contraction
Time frame: Week 16 and week 36
Between group differences in isometric knee extension rate of force development at week 16
Determined by a Biodex isokinetic dynamometer, during a isometric knee extension contraction
Time frame: Week 16
Between group differences in isometric knee extension rate of force development at week 36
Determined by a Biodex isokinetic dynamometer, during a isometric knee extension contraction
Time frame: Week 36
Changes from baseline in isometric knee extension rate of force development at week 16
Determined by a Biodex isokinetic dynamometer, during a isometric knee extension contraction
Time frame: Baseline and week 16
Changes from baseline in isometric knee extension rate of force development at week 36
Determined by a Biodex isokinetic dynamometer, during a isometric knee extension contraction
Time frame: Baseline and week 36
Changes from week 16 in isometric knee extension rate of force development at week 36
Determined by a Biodex isokinetic dynamometer, during a isometric knee extension contraction
Time frame: Week 16 and week 36
Between group differences in upper body strength at week 16
Determined by a handgrip dynamometer.
Time frame: Week 16
Between group differences in upper body strength at week 36
Determined by a handgrip dynamometer.
Time frame: Week 36
Changes from baseline in upper body strength at week 16
Determined by a handgrip dynamometer.
Time frame: Baseline and week 16
Changes from baseline in upper body strength at week 36
Determined by a handgrip dynamometer.
Time frame: Baseline and week 36
Changes from week 16 in upper body strength at week 36
Determined by a handgrip dynamometer.
Time frame: Week 16 and week 36
Between group differences in postural balance at week 16
Determined by the number of falls in a single-legged flamingo balance test.
Time frame: Week 16
Between group differences in postural balance at week 36
Determined by the number of falls in a single-legged flamingo balance test.
Time frame: Week 36
Changes from baseline in postural balance at week 16
Determined by the number of falls in a single-legged flamingo balance test.
Time frame: Baseline and week 16
Changes from baseline in postural balance at week 36
Determined by the number of falls in a single-legged flamingo balance test.
Time frame: Baseline and week 36
Changes from week 16 in postural balance at week 36
Determined by the number of falls in a single-legged flamingo balance test.
Time frame: Week 16 and week 36
Between group differences in aerobic performance at week 16
Determined by meters covered in the Yo-Yo intermittent endurance level 1 test.
Time frame: Week 16
Between group differences in aerobic performance at week 36
Determined by meters covered in the Yo-Yo intermittent endurance level 1 test.
Time frame: Week 36
Changes from baseline in aerobic performance at week 16
Determined by meters covered in the Yo-Yo intermittent endurance level 1 test.
Time frame: Baseline and week 16
Changes from baseline in aerobic performance at week 36
Determined by meters covered in the Yo-Yo intermittent endurance level 1 test.
Time frame: Baseline and week 36
Changes from week 16 in aerobic performance at week 36
Determined by meters covered in the Yo-Yo intermittent endurance level 1 test.
Time frame: Week 16 and week 36
Between group differences in total cholesterol at week 16
Determined by an automated analyser.
Time frame: Week 16
Between group differences in total cholesterol at week 36
Determined by an automated analyser.
Time frame: Week 36
Changes from baseline in total cholesterol at week 16
Determined by an automated analyser.
Time frame: Baseline and week 16
Changes from baseline in total cholesterol at week 36
Determined by an automated analyser.
Time frame: Baseline and week 36
Changes from week 16 in total cholesterol at week 36
Determined by an automated analyser.
Time frame: Week 16 and week 36
Between group differences in high-density lipoprotein cholesterol at week 16
Determined by an automated analyser.
Time frame: Week 16
Between group differences in high-density lipoprotein cholesterol at week 36
Determined by an automated analyser.
Time frame: Week 36
Changes from baseline in high-density lipoprotein cholesterol at week 16
Determined by an automated analyser.
Time frame: Baseline and week 16
Changes from baseline in high-density lipoprotein cholesterol at week 36
Determined by an automated analyser.
Time frame: Baseline and week 36
Changes from week 16 in high-density lipoprotein cholesterol at week 36
Determined by an automated analyser.
Time frame: Week 16 and week 36
Between group differences in low-density lipoprotein cholesterol at week 16
Determined by an automated analyser.
Time frame: Week 16
Between group differences in low-density lipoprotein cholesterol at week 36
Determined by an automated analyser.
Time frame: Week 36
Changes from baseline in low-density lipoprotein cholesterol at week 16
Determined by an automated analyser.
Time frame: Baseline and week 16
Changes from baseline in low-density lipoprotein cholesterol at week 36
Determined by an automated analyser.
Time frame: Baseline and week 36
Changes from week 16 in low-density lipoprotein cholesterol at week 36
Determined by an automated analyser.
Time frame: Week 16 and week 36
Between group differences in triglycerides at week 16
Determined by an automated analyser.
Time frame: Week 16
Between group differences in triglycerides at week 36
Determined by an automated analyser.
Time frame: Week 36
Changes from baseline in triglycerides at week 16
Determined by an automated analyser.
Time frame: Baseline and week 16
Changes from baseline in triglycerides at week 36
Determined by an automated analyser.
Time frame: Baseline and week 36
Changes from week 16 in triglycerides at week 36
Determined by an automated analyser.
Time frame: Week 16 and week 36
Between group differences in fasting glucose at week 16
Determined by an automated analyser.
Time frame: Week 16
Between group differences in fasting glucose at week 36
Determined by an automated analyser.
Time frame: Week 36
Changes from baseline in fasting glucose at week 16
Determined by an automated analyser.
Time frame: Baseline and week 16
Changes from baseline in fasting glucose at week 36
Determined by an automated analyser.
Time frame: Baseline and week 36
Changes from week 16 in fasting glucose at week 36
Determined by an automated analyser.
Time frame: Week 16 and week 36
Between group differences in fasting insulin at week 16
Determined by an automated analyser.
Time frame: Week 16
Between group differences in fasting insulin at week 36
Determined by an automated analyser.
Time frame: Week 36
Change from baseline in fasting insulin at week 16
Determined by an automated analyser.
Time frame: Baseline and week 16
Change from baseline in fasting insulin at week 36
Determined by an automated analyser.
Time frame: Baseline and week 36
Change from week 16 in fasting insulin at week 36
Determined by an automated analyser.
Time frame: Week 16 and week 36
Between group differences in glucose tolerance at week 16
Determined by an oral glucose tolerance teste, analysed by an automated analyser.
Time frame: Week 16
Between group differences in glucose tolerance at week 36
Determined by an oral glucose tolerance teste, analysed by an automated analyser.
Time frame: Week 36
Changes from baseline in glucose tolerance at week 16
Determined by an oral glucose tolerance teste, analysed by an automated analyser.
Time frame: Baseline and week 16
Changes from baseline in glucose tolerance at week 36
Determined by an oral glucose tolerance teste, analysed by an automated analyser.
Time frame: Baseline and week 36
Changes from week 16 in glucose tolerance at week 36
Determined by an oral glucose tolerance teste, analysed by an automated analyser.
Time frame: Week 16 and week 36
This platform is for informational purposes only and does not constitute medical advice. Always consult a qualified healthcare professional.