Skip to content

Effect of Plyometric Exercises in Premenopausal Women

The Effect of Plyometric Exercises on Muscle Strength in Premenopausal Women

Status
Completed
Phases
NA
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT04809857
Enrollment
26
Registered
2021-03-22
Start date
2006-01-31
Completion date
2007-05-31
Last updated
2021-03-22

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

Conditions

Premenopausal Women

Keywords

Plyometric exercise, Isokinetic, Muscle strength, Premenopause

Brief summary

It was aimed to examine the effects of plyometric exercises on muscle strength in this study. 26 premenopausal women assigned to one of the three groups: Control Group (n=8), Plyometric Exercise Group (n=10) and Isokinetic Exercise Group (n=8). Muscle strength assessments, depression and anxiety inventories were performed baseline and after 6 weeks.

Detailed description

Depending on various factors, bone mass begins to decrease with aging and this may lead to the osteoporosis. Physical activity and regular exercise provides an increase in bone mineral density (BMD). It is mentioned that there are relationships between muscle strength and BMD and also muscle strength has positive effects on BMD. In the literature it is showed that postmenopausal women with weaker trunk muscle strength could have risk of osteoporosis. Plyometric exercises are used to increase muscle strength. Physiological basis of plyometric exercise consist of stretch-shortening cycle and thus it is effective in increasing the force. At the same time, plyometric exercises have positive effects on BMD because of weight bearing exercises. The aim of this study was to investigate the effects of plyometric exercises on hip and trunk muscle strength in premenopausal women. Participants and Study Design: Twenty six sedentary premenopausal women aged 35-50 years participated this study. Participants were assigned into three groups: Plyometric Exercise Group (PG; n=10), Isokinetic Exercise Group (IG; n=8), Control Group (CG; n=8). Participants were informed about the procedures of the study and signed a written voluntary consent form in accordance with the Declaration of Helsinki. The study protocol was approved by the Ethical Committee of the Istanbul University Medical Faculty. Measurements and training sessions were performed in the Istanbul University Medical Faculty Sport Medicine Department's Laboratory. Measurements: Muscle strength was determined by using a Cybex Norm isokinetic dynamometer (Cybex Humac Norm, USA). Range of motion was set from 10 degree extension to 40 degree flexion. Isokinetic concentric contraction strength was measured at angular velocity of 60 degree per second and 90 degree per second. Subjects performed 3 trials trunk flexion and extension contractions at minimal exertion and 4 test repetitions at maximal trunk flexion and extension. The hip abduction adduction isokinetic testing was performed in side lying position. Hip muscle strength was measured at angular velocity of 30 degree per second. Range of motion was set from 10 degree adduction to 40 degree abduction. Subjects performed 4 trials at minimal exertion and 4 test repetitions. Dominant leg values were analyzed for hip. All subjects performed warm-up and stretching exercises before testing. Beck Depression Inventory (BDI) and State-Trait Anxiety Inventory (STAI) were used to asses depression and anxiety conditions. Interventions: The training sessions were performed three days a week for six weeks. All exercise sessions were supervised by a physiotherapist. Each session was consisted of warm-up, plyometric exercises and cool-down periods in PG. The warm-up and cool-down periods were performed by walking on the treadmill and lower extremity stretching exercises. The plyometric exercise training period involved vertical jumping, forward and back jumping and lateral jumping. After fifth session the number of repetitions were increased depending of toleration of participants. After tenth session step bench jumping exercise and after fifteenth session diagonal jumping exercise were added and study was completed in eighteen session. In IG, isokinetic exercises were performed by using a Cybex Norm isokinetic dynamometer with an incorporated trunk flexion/extension unit in a standing position. Range of motion was set from 10 degree extension to 40 degree flexion. Each session was consisted warm-up, isokinetic exercises and cool-down periods. Warm-up and cool-down periods were consisted trunk exercise and stretching. Isokinetic exercises were performed 7 repetitions at angular velocity of 90 degree per second , 6 repetitions at angular velocity of 75 degree per second and 5 repetitions at angular velocity of 60 degree per second. Participants in CG were assessed baseline and at sixth week.

Interventions

OTHERExercise

Sponsors

Istanbul University
CollaboratorOTHER
Bezmialem Vakif University
Lead SponsorOTHER

Study design

Allocation
NON_RANDOMIZED
Intervention model
PARALLEL
Primary purpose
OTHER
Masking
NONE

Eligibility

Sex/Gender
FEMALE
Age
35 Years to 50 Years
Healthy volunteers
Yes

Inclusion criteria

* Premenopausal women aged 35-50 years

Exclusion criteria

* to have cardiovascular, musculoskeletal and neurologic disease * have been involved in exercise studies within the last 6 months * to being receive hormone replacement therapy

Design outcomes

Primary

MeasureTime frameDescription
Isokinetic testing trunk flexion-extensionSix weekschanges trunk flexion and extension muscle strength from baseline at 6 weeks
Isokinetic testing hip abduction-adductionSix weekschanges hip abduction and adduction muscle strength from baseline at 6 weeks

Secondary

MeasureTime frameDescription
Beck Depression InventorySix weekschanges inventory scores from baseline at 6 weeks
State Trait Anxiety InventorySix weekschanges inventory scores from baseline at 6 weeks

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Feb 4, 2026