Displaying publications 41 - 60 of 150 in total

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  1. Rabbi MF, Ghazali KH, Mohd II, Alqahtani M, Altwijri O, Ahamed NU
    J Back Musculoskelet Rehabil, 2018;31(6):1097-1104.
    PMID: 29945343 DOI: 10.3233/BMR-170988
    This study aimed to investigate the electrical activity of two muscles located at the dorsal surface during Islamic prayer (Salat). Specifically, the electromyography (EMG) activity of the erector spinae and trapezius muscles during four positions observed while performing Salat, namely standing, bowing, sitting and prostration, were investigated. Seven adult subjects with an average age of 28.1 (± 3.8) years were included in the study. EMG data were obtained from their trapezius and erector spinae muscles while the subjects maintained the specific positions of Salat. The EMG signal was analysed using time and frequency domain features. The results indicate that the trapezius muscle remains relaxed during the standing and sitting positions while the erector spinae muscle remains contracted during these two positions. Additionally, during the bowing and prostration positions of Salat, these two muscles exhibit the opposite activities: the trapezius muscle remains contracted while the erector spinae muscle remains relaxed. Overall, both muscles maintain a balance in terms of contraction and relaxation during bowing and prostration position. The irregularity of the neuro-muscular signal might cause pain and prevent Muslims from performing their obligatory prayer. This study will aid the accurate understanding of how the back muscles respond in specific postures during Salat.
    Matched MeSH terms: Posture/physiology*
  2. Azizan NA, Basaruddin KS, Salleh AF
    Appl Bionics Biomech, 2018;2018:5156348.
    PMID: 30116295 DOI: 10.1155/2018/5156348
    Various studies have examined body posture stability, including postural sway and associated biomechanical parameters, to assess the severity effects of leg length discrepancy (LLD). However, various viewpoints have been articulated on the results of these studies because of certain drawbacks in the comprehensive analysis of the effect of variations in LLD magnitude. Therefore, this systematic review was performed to help focus on the current findings to help identify which biomechanical parameters are most relevant, commonly used, and able to distinguish and/or have specific clinical relevance to the effect of variations in LLD magnitude during static (standing) and dynamic (walking) conditions. Several electronic databases containing studies from the year 1983 to 2016 (Scopus, ScienceDirect, PubMed, PMC, and ProQuest) were obtained in our literature search. The search process yielded 22 published articles that fulfilled our criteria. We found most of the published data that we analyzed to be inconsistent, and very little data was obtained on the correlation between LLD severity and changes in body posture stability during standing and walking. However, the results of the present review study are in line with previous observational studies, which describe asymmetry in the lower limbs corresponding to biomechanical parameters such as gait kinematics, kinetics, and other parameters described during static (standing) postural balance. In future investigations, we believe that it might be useful to use and exploit other balance-related factors that may potentially influence body posture stability.
    Matched MeSH terms: Posture
  3. Muhammad Fikri, Z., Ruzy Haryati, H., Seri Rahayu, K.
    MyJurnal
    Anthropometric study is one of the oldest branches of study in ergonomics where it serves a purpose in study of
    proportion and size for human body. One of the common methods used in anthropometric measurement is traditional
    measurement or direct measurement. However, Malaysia is still left behind other countries in development of national
    anthropometric database. Researchers in Malaysia are still relying on the traditional anthropometric (TA)
    measurement. There are several important factors that contribute to problems in TA such as accuracy, time, posture,
    identification of landmarks, instrument positions and orientations, and pressure exerted due to measuring equipment. In
    view of the fact that the difficulties of obtaining human anthropometry, it becomes necessary to propose a method which
    has less contact executed to respondent. This study aims to propose a new anthropometric measurement method using
    motion capture camera (MCC) method, later to develop the database for youth male population. A pilot test was done
    in order to confirm the measuring procedure as well as the flow of the study. Next, the Minitab statistical software used
    to check the validity and reliability of data using the tests of a) Accuracy-Pearson/Spearman Correlation b) BiasPaired
    T-Test c) Test-Retest Reliability-Pearson/Spearman Correlation d) Precision-Mean Absolute Difference and
    Relative Error Measurement. Results showed that the validity and reliability of this motion camera has successfully
    obtained and the anthropometric data for youth male respondents has successfully constructed. These findings can be
    used and expended to the national anthropometric database to be utilised in ergonomics design.
    Matched MeSH terms: Posture
  4. Teo Chuun, B., Dian Darina Indah, D., Darliana, M.
    MyJurnal
    This study is aimed at seat design optimization for high-speed train based on the Malaysians sitting anthropometry
    data focusing on seat fit parameters. An analysis of anthropometry data composed of 15 dimensions that are
    required in seat design was done with 50 male subjects. These data were collected through direct measuring
    methods with standard equipment. According to the Malaysian automotive seat fit parameters, the backrest width,
    backrest height, cushion width, and cushion length were established based on these anthropometric dimensions:
    interscye breadth (5th percentile female and 95th percentile male), hip breadth (95th percentile female), sitting
    shoulder height (5th percentile female), and buttock-popliteal length (5th percentile female), respectively. This
    study uses the CATIA software to design and analyse the proposed seat design. The fit parameters proposed for the
    new design are seat height, 380mm; cushion width, 450mm; backrest width, 450mm and backrest height, 850mm.
    The CATIA human activity analysis (based on Rapid Upper Limb Analysis, RULA) was also executed. From the study,
    the new conceptual seat design gives the most optimized fit when compared to the current seat.
    Matched MeSH terms: Posture
  5. Sukadarin, E.H., Qian, F.S., Zakaria, J., Deros, B.M., Nawi, N.S.M.
    MyJurnal
    Prolonged sitting is one of the factors for back discomfort. Sitting in the same position for long periods of time is worse.
    This experimental based study was conducted to achieve three objectives. There were to 1) identify whether is there any
    differences between perceived body discomfort among respondents before and after upright sitting, 2) identify whether
    is there any differences between perceived body discomfort among respondents before and after slump sitting and 3)
    compare the level of perceived body discomfort among respondents after two sitting postures. Thirty young and healthy
    adults were recruited as study respondents. Each respondent was asked to sit in a posture either upright or slump for 30
    minutes. Respondents were then rated their body discomfort using Borg CR-10 scale before and after sitting. Another
    sitting posture was carried out after one day interval. There is a significant difference between perceived body
    discomfort among respondents before and after upright and slump sitting. Body discomfort of upright sitting was shown
    significantly greater than slump sitting. Although, slump sitting caused less discomfort than upright, but it proven by
    previous studies did not provide benefit to occupational safety and health practice in preventing occupational health
    related disease.
    Matched MeSH terms: Posture
  6. Abdulazeez Uba Muhammad, Kassim Abdulrahman Abdullah, Waleed Fekry Faris
    MyJurnal
    The best commonly applied approach in seating ergonomics is the concept that the seat must fit the sitter.
    Understanding of population anthropometry is necessary because, in the mass vehicle market, a single seat should fit
    a huge portion of the population. This research work proposes some automotive seat fit parameters based on a
    representative Nigerian anthropometric data, to ensure an optimum fit between the vehicle seats and the occupants,
    as well as providing adequate accommodation. Anthropometric data of 863 Nigerians captured with special emphasis
    on the dimensions that are applicable in automotive seat design. A comparison made between the data obtained and
    that of five other countries. The proposed dimensions includes: seat cushion width (475mm); seat cushion length
    (394mm); seat height (340mm); seat lateral location (583mm); seat back height (480mm); seat back width (427mm);
    armrest height (246mm); headrest height (703mm); armrest surface length (345mm); backrest width (thoracic level)
    (524mm); seat adjustment (186mm); backrest width (lumbar level) (475mm) and distance between armrests
    (475mm). A comparison made between the proposed dimensions and those recommended by four other scholars for
    other populations. Finally, an ergonomic automotive seat suitable for the Nigerian population was designed using
    AutoCAD 2016 software based on the proposed established dimensions.
    Matched MeSH terms: Posture
  7. Noor'Ain Azizan, Seri Rahayu Kamat, Nur Syafiqah Rayme, Ruzy Haryati Hambali
    MyJurnal
    Repetitive movement can lead to the pain muscle, nerves, and tendons that cause by
    repetitive overuse of working task. The muscle will fatigue due to; repetitive
    movement, force that been applied, posture during working and duration of working.
    The stress level during working can influent the energy performance usage during
    working. The aim of this paper is to analyse the influence of heart rate and muscle
    activity of workers in composite manufacturing towards muscle fatigue. The data was
    collected for a worker in hand layup department and the Qualitative method was used
    in a way to investigate the working load and level of pain received by their body. Then,
    the Qualitative data was sorted and the respondent proceeded for a Quantitative
    method which involves muscle activity analysis and heart rate analysis. The tools that
    were used to conduct these experiments were surface electromyography (sEMG),
    Wristwatch with chest strap and perceived stress scale (PSS). The experimentation
    used to calculate the average reading of heart rate and muscle activity during working
    and detect the duration the muscle to start fatigue. Moreover, this paper analysed the
    relationship between heart rate and muscle activity through the duration of working.
    As an overall finding of this research, it was shown that the heart rate of the workers
    influence the muscle activity of workers and has high potential relationship to the
    fatigue of muscles of the workers in the layup department.
    Matched MeSH terms: Posture
  8. Ahmed, M., Huq, M.S., Ibrahim, B.S.K.K., Ahmed, A.
    Movement Health & Exercise, 2018;7(1):211-223.
    MyJurnal
    Functional Electrical Stimulation (FES) can be used to revive movement
    functions of the human body to a certain degree which was lost due to
    occurrences of the nervous system disorders resulting from accidents or
    diseases. It can also be employed for gait rehabilitation as well as therapy.
    Control systems could be employed to improve on the FES-induced motion,
    and the closed-loop was targeted due to its advantages. Based on the papers
    reviewed, studies have shown that the linear control schemes are popular for
    movement restoration in the lower limb, but mostly for continuous standing
    contributing to mainly the stance phase. Therefore, a myriad of limitations
    was observed which include: the need for using improved sensors, re-tuning
    for every subject, tests conducted using patient with more straightforward
    ailments, complexity in implementation and most importantly is the issue of
    stability. The swing phase of gait movement and the full walking motion have
    more complex dynamics and coupled with the nature of the plant (human with
    nervous system disorder and the neuromuscular structure) could render the
    linear control method obsolete or unsuitable. Hence, there is a need to
    investigate other techniques such as the nonlinear and intelligent control
    methods.
    Matched MeSH terms: Posture
  9. Nurul Asyiqin Yusof, Che Anuar Che Mohamad, Ahmad Nizam Hassan
    MyJurnal
    The integration of human knowledge between the medical and health care sciences with revealed knowledge was established since the era of Al-Razi (Rhazes), Ibn Sina (Avicenna), Ibn Rushd (Averroes), AlZahrawi (Albucasis) and others. However, the glorious period of Islamic medicine gradually declined after the period of 'Abbasiyyah and 'Uthmaniyyah. At present, many scholars tend to separate the modern medicine and the revealed knowledge, resulting in the disconnection between these two fields. There is little to suggest the presence of reference collections that integrate the Qur’an and Hadith with medicine. This review aimed to fill that gap. Relevant Qur’anic verses and authentic Hadith of the Prophet Muhammad (peace be upon him; henceforth PBUH) in relation to a specific field in medicine i.e. the anatomy of human musculoskeletal system was extracted. The musculoskeletal system is unique in which it forms the ‘backbone’ of normal human posture. The system plays a vital role in maintaining human daily activities. From this review, it is noted that many Qur’anic verses and Hadith relate to the musculoskeletal system. A few examples include the number human joints and its relationship with the daily prayers (Salah), the daily charitable act recommended to all Muslim, the coccyx bone that is indestructible and shall be the source for human resurrection during the hereafter, and others. These examples necessitate for a more in-depth analysis to enlighten the revealed knowledge from the medical perspective.
    Matched MeSH terms: Posture
  10. Nor Afifi Razaob, Ain Efahera Ahmad Tajuddin, Nor Azlin Mohd Nordin, Nor Najwatul Akmal Ab Rahman
    Jurnal Sains Kesihatan Malaysia, 2018;16(101):165-170.
    MyJurnal
    Enhancement of physical function had been shown in older adults who actively participate in physical activities, particularly in the form of aerobic training with addition of progressive resistance training (PRT). However, it is quite challenging and risky for most older adults to exercise in standing position without any support. Chair Based Exercise (CBE) is an alternative mode of exercise for older adult to facilitate exercise participation and increase safety. Its effect when combined with resistance training is unknown to date. Therefore, the aim of this study was to evaluate the outcome of CBE with PRT on physical performances among older adults. A total of 18 older adults (13 females (72%)) and 5 males (28%)), aged 60 to 83 years with mean age (SD) 72.67 (6.17) years completed the study. All subjects performed CBE with PRT intervention twice weekly for 8 weeks, with individually-tailored exercise progressions. Pre and post measurements of physical performance were performed using Six MinutesWalk Test (6MWT), Five Times Sit to Stand (FTSTS) and Hand Grip Strength (HGS) test. Significant improvement in 6MWT (p < .001), HGS Right hand (p = .043), HGS Left hand (p < .001), FTSTS (p < .001) was shown after the eight-week intervention. Adding PRT into seated exercises results in further improvement in physical performance of older adults. CBE-PRT may be recommended as an exercise routine for older adults living in the community.
    Matched MeSH terms: Posture
  11. Azizan NA, Basaruddin KS, Salleh AF, Sulaiman AR, Safar MJA, Rusli WMR
    J Healthc Eng, 2018;2018:7815451.
    PMID: 29983905 DOI: 10.1155/2018/7815451
    Balance in the human body's movement is generally associated with different synergistic pathologies. The trunk is supported by one's leg most of the time when walking. A person with poor balance may face limitation when performing their physical activities on a daily basis, and they may be more prone to having risk of fall. The ground reaction forces (GRFs), centre of pressure (COP), and centre of mass (COM) in quite standing posture were often measured for the evaluation of balance. Currently, there is still no experimental evidence or study on leg length discrepancy (LLD) during walking. Analysis of the stability parameters is more representative of the functional activity undergone by the person who has a LLD. Therefore, this study hopes to shed new light on the effects of LLD on the dynamic stability associated with VGRF, COP, and COM during walking. Eighteen healthy subjects were selected among the university population with normal BMIs. Each subject was asked to walk with 1.0 to 2.0 ms-1 of walking speed for three to five trials each. Insoles of 0.5 cm thickness were added, and the thickness of the insoles was subsequently raised until 4 cm and placed under the right foot as we simulated LLD. The captured data obtained from a force plate and motion analysis present Peak VGRF (single-leg stance) and WD (double-leg stance) that showed more forces exerted on the short leg rather than long leg. Obviously, changes occurred on the displacement of COM trajectories in the ML and vertical directions as LLD increased at the whole gait cycle. Displacement of COP trajectories demonstrated that more distribution was on the short leg rather than on the long leg. The root mean square (RMS) of COP-COM distance showed, obviously, changes only in ML direction with the value at 3 cm and 3.5 cm. The cutoff value via receiver operating characteristic (ROC) indicates the significant differences starting at the level 2.5 cm up to 4 cm in long and short legs for both AP and ML directions. The present study performed included all the proposed parameters on the effect of dynamic stability on LLD during walking and thus helps to determine and evaluate the balance pattern.
    Matched MeSH terms: Posture
  12. Uijtdewilligen L, Yin JD, van der Ploeg HP, Müller-Riemenschneider F
    Int J Behav Nutr Phys Act, 2017 Dec 13;14(1):169.
    PMID: 29237471 DOI: 10.1186/s12966-017-0626-4
    BACKGROUND: Evidence on the health risks of sitting is accumulating. However, research identifying factors influencing sitting time in adults is limited, especially in Asian populations. This study aimed to identify socio-demographic and lifestyle correlates of occupational, leisure and total sitting time in a sample of Singapore working adults.

    METHODS: Data were collected between 2004 and 2010 from participants of the Singapore Multi Ethnic Cohort (MEC). Medical exclusion criteria for cohort participation were cancer, heart disease, stroke, renal failure and serious mental illness. Participants who were not working over the past 12 months and without data on sitting time were excluded from the analyses. Multivariable regression analyses were used to examine cross-sectional associations of self-reported age, gender, ethnicity, marital status, education, smoking, caloric intake and moderate-to-vigorous leisure time physical activity (LTPA) with self-reported occupational, leisure and total sitting time. Correlates were also studied separately for Chinese, Malays and Indians.

    RESULTS: The final sample comprised 9384 participants (54.8% male): 50.5% were Chinese, 24.0% Malay, and 25.5% Indian. For the total sample, mean occupational sitting time was 2.71 h/day, mean leisure sitting time was 2.77 h/day and mean total sitting time was 5.48 h/day. Sitting time in all domains was highest among Chinese. Age, gender, education, and caloric intake were associated with higher occupational sitting time, while ethnicity, marital status and smoking were associated with lower occupational sitting time. Marital status, smoking, caloric intake and LTPA were associated with higher leisure sitting time, while age, gender and ethnicity were associated with lower leisure sitting time. Gender, marital status, education, caloric intake and LTPA were associated with higher total sitting time, while ethnicity was associated with lower total sitting time. Stratified analyses revealed different associations within sitting domains for Indians compared to Chinese and Malays.

    CONCLUSION: Our findings highlight the need to focus on separate domains of sitting (occupational, leisure or total) when identifying which factors determine this behavior, and that the content of intervention programs should be tailored to domain-specific sitting rather than to sitting in general. Finally, our study showed ethnic differences and therefore we recommend to culturally target interventions.

    Matched MeSH terms: Posture*
  13. Williams DP, Jarczok MN, Ellis RJ, Hillecke TK, Thayer JF, Koenig J
    Clin Physiol Funct Imaging, 2017 Nov;37(6):776-781.
    PMID: 26815165 DOI: 10.1111/cpf.12321
    Recently, research has validated the use of Polar® heart rate monitors as a tool to index heart rate variability (HRV). In the current investigation, we sought to evaluate the test-retest reliability of both time and frequency domain measures of HRV using the Polar® RS800CX™ . Continuous HRV data were collected as 60 nominally healthy adults underwent a resting and orthostatic stress test. We evaluated reproducibility by means of the interclass correlation coefficient for absolute agreement and consistency, and the standard error of measurement. We found moderate reliable 2-week test-retest reliability of HRV using the Polar® RS800CX™ , results that are in line with previous studies that have validated the stability of HRV using other methods of measurement (e.g. electrocardiogram). Additionally, when examining different methods of spectral density estimation, we found that using the auto-regressive transformation method provides the most stable indices of HRV. Taken together, our results suggest that the Polar® RS800CX™ is not only a valid method to record HRV, but also a reliable one, particularly when using the auto-regressive transformation method.
    Matched MeSH terms: Posture*
  14. Goh CH, Ng SC, Kamaruzzaman SB, Chin AV, Tan MP
    Medicine (Baltimore), 2017 Oct;96(42):e8193.
    PMID: 29049203 DOI: 10.1097/MD.0000000000008193
    The aim of this study was to determine the relationship between falls and beat-to-beat blood pressure (BP) variability.Continuous noninvasive BP measurement is as accurate as invasive techniques. We evaluated beat-to-beat supine and standing BP variability (BPV) using time and frequency domain analysis from noninvasive continuous BP recordings.A total of 1218 older adults were selected. Continuous BP recordings obtained were analyzed to determine standard deviation (SD) and root mean square of real variability (RMSRV) for time domain BPV and fast-Fourier transform low frequency (LF), high frequency (HF), total power spectral density (PSD), and LF:HF ratio for frequency domain BPV.Comparisons were performed between 256 (21%) individuals with at least 1 fall in the past 12 months and nonfallers. Fallers were significantly older (P = .007), more likely to be female (P = .006), and required a longer time to complete the Timed-Up and Go test (TUG) and frailty walk test (P ≤ .001). Standing systolic BPV (SBPV) was significantly lower in fallers compared to nonfallers (SBPV-SD, P = .016; SBPV-RMSRV, P = .033; SBPV-LF, P = .003; SBPV-total PSD, P = .012). Nonfallers had significantly higher supine to standing ratio (SSR) for SBPV-SD, SBPV-RMSRV, and SBPV-total PSD (P = .017, P = .013, and P = .009). In multivariate analyses, standing BPV remained significantly lower in fallers compared to nonfallers after adjustment for age, sex, diabetes, frailty walk, and supine systolic BP. The reduction in frequency-domain SSR among fallers was attenuated by supine systolic BP, TUG, and frailty walk.In conclusion, reduced beat-to-beat BPV while standing is independently associated with increased risk of falls. Changes between supine and standing BPV are confounded by supine BP and walking speed.
    Matched MeSH terms: Posture/physiology*
  15. Wafa SW, Aziz NN, Shahril MR, Halib H, Rahim M, Janssen X
    J Trop Pediatr, 2017 04 01;63(2):98-103.
    PMID: 27539845 DOI: 10.1093/tropej/fmw052
    This study describes the patterns of objectively measured sitting, standing and stepping in obese children using the activPALTM and highlights possible differences in sedentary levels and patterns during weekdays and weekends. Sixty-five obese children, aged 9-11 years, were recruited from primary schools in Terengganu, Malaysia. Sitting, standing and stepping were objectively measured using an activPALTM accelerometer over a period of 4-7 days. Obese children spent an average of 69.6% of their day sitting/lying, 19.1% standing and 11.3% stepping. Weekdays and weekends differed significantly in total time spent sitting/lying, standing, stepping, step count, number of sedentary bouts and length of sedentary bouts (p < 0.05, respectively). Obese children spent a large proportion of their time sedentarily, and they spent more time sedentarily during weekends compared with weekdays. This study on sedentary behaviour patterns presents valuable information for designing and implementing strategies to decrease sedentary time among obese children, particularly during weekends.
    Matched MeSH terms: Posture
  16. Maakip I, Keegel T, Oakman J
    Appl Ergon, 2017 Apr;60:52-57.
    PMID: 28166899 DOI: 10.1016/j.apergo.2016.11.004
    Prevalence and predictors associated with musculoskeletal disorders (MSDs) vary considerably between countries. It is plausible that socio-cultural contexts may contribute to these differences. We conducted a cross-sectional survey with 1184 Malaysian and Australian office workers with the aim to examine predictors associated with MSD discomfort. The 6-month period prevalence of self-reported MSD discomfort for Malaysian office workers was 92.8% and 71.2% among Australian workers. In Malaysia, a model regressing level of musculoskeletal discomfort against possible risk factors was significant overall (F [6, 370] = 17.35; p 
    Matched MeSH terms: Posture
  17. Adeyemi AJ, Rohani JM, Abdul Rani MR
    Appl Ergon, 2017 Jan;58:573-582.
    PMID: 27132042 DOI: 10.1016/j.apergo.2016.04.009
    The study analysed backpack-related back pain in school children by investigating the possibility of multiple interactions among causative factors, which may be responsible for the non-conclusive findings on the issue. Using data from 444 prepubescent schoolchildren, a mixed method design combining survey, observation and direct measurement strategies was implemented. Using a multivariate structural equation modelling approach, the study investigated interactions among anthropometry, posture, backpack volume, rating and back pain constructs, with each construct made of 2-4 indicators. Additionally, regression analysis was used to determine the feasibility of considering the two additional factors of age and body mass index along with the globally accepted recommendation of a load of 10-15% of body weight. Our model demonstrated an acceptable model fit and revealed direct and indirect effects of the factors. Obese children were recommended to carry a one-third lighter load than other children. The application of systematic/multiple strategies provided an explanation for some of the issues associated with school children's backpack-related back pain.
    Matched MeSH terms: Posture
  18. Firdaus Sukarman, Mohd Ghazali Mohd Hamami, Mazleenda Mazni, Muhammad Amir Mat Shah, Ahmad Faidzal Khodori
    MyJurnal
    The utilization of parallelogram structure in a small-sized humanoid robot consists of two parallel platforms that are linked serially in each leg. The thigh and shank of each leg consists of two servomotors as actuator and linked in parallel platform. By using parallel mechanism in leg structure, foot sole surface is always parallel to the walking surface at any point. Even it looks unnatural to human-like walking motion, the expected result is the robot can maintain it posture while walking and at the point foot sole touch the walking surface, unnecessary vibrates can be modulated at the certain level to remain its balance. The effectiveness and the performance of the proposed parallel platforms are experimented by using zero moment point (ZMP) method by taking various scenario data from pressure sensors attached at the footsole. Planned walking gait is introduced to be identical in terms of foot steps length and width of each leg swing. As the results, in terms of load in each actuator, required torque at servomotors can be reduced because two servomotors are used simultaneously in one parallel system. Stable walking gait can be predicted as the quantity of error falls within the error ranges from the published walking gait patterns.
    Matched MeSH terms: Posture
  19. Sadeghi H, Hakim MN, Hamid TA, Amri SB, Razeghi M, Farazdaghi M, et al.
    Arch Gerontol Geriatr, 2017 Mar-Apr;69:144-150.
    PMID: 27923177 DOI: 10.1016/j.archger.2016.11.009
    BACKGROUND: Proprioception is the ability to sense the body position, muscle sense, joint stability and posture. As balance decreases during the process of aging, knee proprioception has a critical role in body balance and daily activities. Exergaming has shown to be a potentially effective and more enjoyable form of exercise delivery.

    OBJECTIVE: The purpose of this study was to determine the effect of an 8-week Xbox Kinect exercise program on knee proprioception in healthy older adults.

    METHODOLOGY: Thirty-two elderly men who were 65 years of age or older were randomly allocated to either a control or experimental group (allocation ratio 1:1). The experimental group received an exergame intervention that included Xbox Kinect with games focusing on movements of the knee joint for 8 weeks (three times per week and 40min per sessions). A Biodex Isokinetic Dynamometer was used to measure knee joint position sense before and after the exercise program.

    RESULTS: After eight weeks of training, knee proprioception significantly improved in the intervention group for several knee joint angles: 30° (3.5±1.1), 45° (3.1±0.9), and 60° (3.0±0.6) compared to the control group 30° (5.2±0.8), 45° (5.2±0.8), and 60° (6.2±0.9) (dominant leg F1, 28=23.469, p=0.001. ƞ2=0.456; non-dominant leg F1, 28=23.076, p=0.001. ƞ2=0.452).

    CONCLUSION: The results from this study indicate that exergame intervention can enhance knee proprioception in elderly men.
    Matched MeSH terms: Posture/physiology*
  20. Lim, Jac Fang, Richard Avoi, Noraziah Bakri, Leonard Masudal, Iskandar Nonche, Adrian Joseph, et al.
    MyJurnal
    The low back is usually associated with the lumbar spine which supports the entire weight of the upper body and significantly, is vital to the body mobility. Injury to the surrounding soft tissues can cause mild to debilitating symptoms due to muscle strain and ligament sprain. The causes of injury to the lower back are probably due to sudden twisting movement, poor posture position at work and manual handling of heavy objects or with twisting or bending movements while lifting. An Ergonomic Risk Assessment was carried out on a dental laboratory worker who complained of unresolved low back ache after a year on treatment and follow up at the outpatient department of a health clinic. From the various investigative methods used, it was found that the worker in question was placed in a situation that will over time encourage her to develop musculoskeletal disease. Our recommendations for change include immediate awareness and training in ergonomic principles of work and to report all cases so that appropriate action can be taken, reassess the workstation and environment of work, job enrichment, and creating a conducive environment for work. Once the changes have been implemented, a review will be necessary in three months time.
    Matched MeSH terms: Posture
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