Balance; Distorted, Overweight and Obesity
Conditions
Keywords
BMI, Core Stability, Healthy Adult
Brief summary
This study will be conducted to investigate the influence of body mass index (BMI) on core stability (CS) in healthy subjects. The participants in this study will be 90 healthy subjects with right dominant lower limb (49 females and 49 males) they will be recruited from College of Applied Medical Sciences, Jazan University.
Detailed description
Subjects will be categorized according to BMI into three groups: Group I (normal subjects): 30 individuals (15 male, and 15 female students) with (BMI\<25 kg//m\^2)) Group II (overweight subjects): 30 individuals (15 male, and 15 female students) with (BMI, 25-30 kg//m\^2)). Group III (obese subjects): 30 individuals (15 male, and 15 female students) (BMI\>30 kg//m\^2)). Motor control element of CS will be investigated by assessing bilateral static balance with open and close eye, right foot balance test, and dynamic balance test using Prokin System for balance. Data of this study will be statistically analyzed by performing descriptive (Mean and standard deviation) and inferential statistics (One way ANOVA, Unpaired T test) at level of significance p=\<0.05.
Interventions
Core Stability Assessment will be consisted of bilateral static balance with open and close eye, right foot balance test, and dynamic balance test.
Sponsors
Study design
Intervention model description
3x3 factorial design, according to body mass index (Independent variable)subjects will be divided into three groups (Group I - normal subjects-BMI\<25 kg/m2, Group II -overweight subjects-BMI, 25-30 kg/m2), Group III -obese subjects- BMI\>30 kg/m2). Core stability (dependent variable) will be measured by three tests : bilateral static balance with open and close eye, uni-pedal static balance test, and dynamic balance test using Prokin System for balance
Eligibility
Inclusion criteria
1. Subjects would not have any diseases of the central nervous system. 2. Subjects would not have any orthopedic disorders either of the trunk or the lower limbs in the previous year. 3. None of the subjects has history of balance training ( Erkmen et al., 2010, Li Li, 2012) .
Exclusion criteria
1. Sign of foot pain, reduced tactile and thermal foot sensibility. 2. Peripheral neuropathy. 3. A history of previous back or abdominal surgery/injury 4. A history of patellofemoral pain syndrome, plantar fasciitis, and back pain . 5. Limb-length discrepancy, and anterior or posterior tibialis dysfunction. 6. Evidence of a systemic or musculoskeletal disease within the past six months (AlAbdulwahab & Kachanathu, 2016).
Design outcomes
Primary
| Measure | Time frame | Description |
|---|---|---|
| Static balance test with eyes opened | 30 Seconds | After explaining the tests to the subjects, data will be entered and the device will be calibrated. Both feet of the subjects will be placed on the balance platform nakedly with eyes are opened. |
| Static balance test with eyes closed | 30 Seconds | After explaining the tests to the subjects, data will be entered and the device will be calibrated. Both feet of the subjects will be placed on the balance platform nakedly with eyes closed. |
| Unipedal static balance | 30 Seconds | It will be measured respectively on right foot with eyes are opened. |
| Dynamic (Equilibrium/ Disequilibrium test) | 60 Seconds | the subject will stand on right foot(dominant), and see some galleries that come against. The subject's scope is to enter into those galleries and to maintain the tilting board as firm as possible. |
Countries
Saudi Arabia