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  1. Chee S, Zawiah H, Ismail M, Ng K
    Malays J Nutr, 1996 Sep;2(2):112-26.
    PMID: 22692134 MyJurnal
    Studies were carried out in two estates in Kedah and Johor to characterize the anthropometry and dietary patterns of 334 (169 females, 165 males) Malaysian estate workers. Subjects were Malay and Indian adults (aged 18 to 60 years) engaged in various work activities including rubber tappers, palm fruit harvesters, field supervisors and workers in the estate factories. Anthropometric results showed that the prevalence of overweight (26% in men, 25% in women) and obesity (5% in men, 11% in women) were higher compared to prevalence of underweight (11% in men, 9% in women) in these workers despite being engaged in moderate to heavy activities. The dietary intake pattern revealed that the main sources of calories in the diet were rice, cooking oil and sugar. Major sources of protein in the Malay diet were anchovies and fish whilst in the Indian diet protein was provided by salted fish, anchovies, eggs, fish, and pulses. The consumption of poultry, meat and dairy products were low for both ethnic groups. The dietary intakes of a subsampel of 108 normal weight subjects (56 females, 52 males) were recorded for 3 days. The results showed that the mean energy intake was 8.44 ± 2.12 MJ in males and 6.48 ± 1.29 MJ in females. The contribution of calories from protein, fat and carbohydrate were 13%, 22% and 60% in males and 12%, 23% and 65% in females, respectively. Alcohol intake was found to contribute five percent of energy in the diet of the Indian male subjects. Calcium, iron, vitamin A, thiamin, riboflavin and niacin intake were below 66% of the Malaysian RDA, particularly amongst the women. Income appeared to have a significant correlation with energy and iron intakes of the female workers as well as thiamin, niacin and riboflavin intakes of the male workers. There is a need for improving the quality of the dietary intakes of these workers as well as nutrition education on the prevention of obesity and its consequences.
  2. Poh B, Zawiah H, Ismail M, Henry C
    Malays J Nutr, 1996 Mar;2(1):1-10.
    PMID: 22692096 MyJurnal
    A study was carried out on 117 schoolchildren comprising 51 boys and 66 girls between the ages of 10 and 13 years to evaluate the effect of Ramadan-fasting on body weight. The results revealed that more than 90% of the subjects experienced a decrease in body weight during Ramadan. The initial mean body weight of the boys and girls were 35.7 ± 6.7 kg and 35.2 ± 6.1 kg respectively. After four weeks' fast, the boys and girls significantly lost (p<0.001) an average of 4.2% and 3.7% of their initial body weight respectively. Dietary intake and activity pattern were also assessed in a subgroup of 20 boys and 30 girls during the same period. The mean daily energy intake during Ramadan-fasting {boys 1230 ± 363 kcal (5.15 ± 1.52 MJ), girls 1034 ± 290 kcal (4.33 ± 1.21 MJ)} was significantly lower (p<0.001) than intake assessed before Ramadan {boys 1520 ± 463 kcal (6.36 ± 1.94 MJ), girls 1344 ± 428 kcal (5.62 ± 1.79 MJ)}. Both values were found to be below the suggested daily dietary intake for Malaysians of similar sex and age group recommended by Teoh (1975). Both boys and girls significantly decreased their intakes of fat, carbohydrate and thiamine during Ramadan. However, intakes of protein, niacin, vitamins A and C were found to be comparable to non-fasting values. During Ramadan, the mean intake of all nutrients analysed except protein were lower than recommended values. The boys spent significantly more (p<0.05) time sitting and significantly less (p<0.05) time standing and in moderately active pursuits during Ramadan. During this period, the boys spent more time in prayers compared with the girls. Time spent on all other activities did not differ between the fasting and non-fasting months. The findings suggest that the decrease in body weight during Ramadan may be primarily due to the reduction in energy intake since activity pattern remain fairly constant. The nutrient intake pattern of the adolescents studied may be of great concern in the long-term, as it does not meet the requirements for the normal growth of adolescents.
  3. Ismail M, Chee S, Roslee R, Zawiah H
    Malays J Nutr, 1998 Dec;4(1):73-80.
    PMID: 22692343
    In the field of human energy expenditure, the measurement of basal metabolic rate (BMR) is an essential element to derive energy requirement estimates for any given population. Besides basic anthropometrics data, this paper reports the generation of predictive equation for basal metabolic rates of healthy Malaysian adult from prospective measurements on 307 male and 349 females aged 18-60 years, using the Douglas bag technique. These new equations based on body-weight reveal that the current FAO/WHO/UNU (1985) predictive equations overestimate BMR of adult Malaysian by an average of 13% in males and 9% in female subjects while differences of between 4-5% were observed when compared to Henry and Rees (1991) equations for tropical people. There is a good reason to believe that the capacity to slow down metabolism amidst the hot and humid climate experience throughout the year as a genuine phenomenon for Malaysians. Similarly, these findings suggest that at equal energy intake recommendation for similar body weight, the lower energy needs of Malaysian could put them at greater risk for developing obesity. These observed deviations must be taken into account in formulating energy requirements of the population.
  4. Ismail MN, Wannudri W, Zawiah H
    Malays J Nutr, 1995 Sep;1(2):141-9.
    PMID: 22692059 MyJurnal
    Seventeen members of the national sepaktakraw squad undergoing centralised training participated in a comprehensive study to determine their daily food intake, activity patterns and energy requirements. Food intake was recorded as a mean of 3-days weighed food intake and the nutrient contents were calculated using a local food composition table. The energy cost of standardised activities was determined by indirect calorimetry while time and motion study was used to estimate the daily energy expenditure of each subject. The mean daily energy intake was 2784±373 kcal (11.6±1.6 MJ) while the mean daily energy expenditure was 3004±298 kcal (12.6±1.2 MJ), with a negative energy balance of 220 kcal ((0.9 MJ). Intake of other nutrients were adequate when compared with the Malaysian RDA, with the exception of niacin. The results of the activity pattern study indicated that the subjects spent about 80% of the day doing light activities while 20% of the day was devoted to their training programme comprising of moderate to heavy activities. This data set represents the first of its kind in Malaysia and should provide impetus for further research in this area which would help establish dietary guidelines for Malaysian sportsmen.
  5. Ismail MN, Wannudri W, Zawiah H
    Malays J Nutr, 1997 Mar;3(1):71-81.
    PMID: 22692236
    A study to predict energy requirements of national athletes, 84 males and 24 females in 9 and 4 different types of sports respectively, were conducted during centralised training. Parameters assessed were anthropometry, 3-day activity pattern and energy cost (kcal/min) of common activities to derive total daily energy expenditure (TDEE). Based on body mass index (BMI), 68 males or 81% and 19 females or 79% of the athletes were classified as normal. The mean body fat content for males and females were 13.8 ± 4.5% and 24.7 ± 5.3%, respectively. The mean daily activity pattern of males and females athletes were similar for light activities (16½ hr or 68% of day), for moderate activities (3½ hr or 15% of day in male, 4 hr or 17% in females) while moderate to heavy activities related to training were 4 hr (17%) and 3½ hr (15%) in males and females, respectively. Energy cost of some common activities ranges from 1.00-3.00 kcal/min in males and 0.84-2.04 kcal/min in females, while values for jogging were 6.60 kcal/min and 5.62 kcal/min in males and females, respectively. The mean TDEE in male ranges from 2938 kcal (12.3 MJ) in boxers (57 kg) to 4861 kcal (20.3 MJ) in weightlifters (110 kg) while the mean TDEE in female ranges from 2099 kcal (8.8 MJ) in athletics (51 kg) to 3098 kcal (13.0 MJ) in basketball (61.4 kg). The calculated physical activity level (PAL) values using measured BMR for males and females athletes ranges from 1.99-2.58 and 1.77-2.34, respectively. In conclusion, the estimated energy requirement for the various sports event studied ranges from 44-55 kcal/kg/day in males and 38-50 kcal/kg/day in female athletes.
  6. Ismail MN, Zawiah H, Chee S, Ng K
    Malays J Nutr, 1995 Mar;1(1):1-9.
    PMID: 22692009 MyJurnal
    Anthropometry is the single most portable, easily applied, inexpensive and non-invasive method of assessing body composition. It reflects both health and nutrition and predicts performance, health and survival. The use of body mass index (BMI) as a measure of obesity has been widespread and has recently been promoted for assessment of chronic energy deficiency (CED) in adults. This report provides BMI values of 2636 adult males and 2111 adult females from the three main ethnic groups residing in urban areas and BMI of adult Malay and Dayak (380 males and 496 females) residing in rural areas in Peninsular Malaysia, Sabah and Sarawak. The percent prevalence of obesity and CED in males for the three ethnic groups were apparently quite similar. However, in the females, CED were higher in the Malays and Chinese while overweight problems were more serious in the Indians. Among the Malays, prevalence of CED for males and females were 7% and 11% in urban areas and 11% and 14% in rural areas, respectively. In the males, it is interesting to note that there is a two-fold difference between urban and rural, while a high prevalence of overweight women (20%) even in the rural areas should be viewed as a potential health problem of the future.
  7. Poh BK, Ismail M, Zawiah H, Henry C
    Malays J Nutr, 1999 Dec;5(1):1-14.
    PMID: 22692353
    A longitudinal study was conducted to relate basal metabolic rate (BMR) with growth during adolescence. Subjects comprise 70 boys and 69 girls aged between ten and thirteen years at the time of recruitment. Parameters studied include anthropometric measurements and BMR, which was measured by indirect calorimetry using the Deltatrac metabolic monitor. Measurements were carried out serially once every six months, with a total of 713 BMR data points collected over three years. Mean BMR of boys aged 11, 12, 13 and 14 years were 4.96 ± 0.63 MJ/day, 5.28 ± 0.71 MJ/day, 5.73 ± 0.68 MJ/day and 5.92 ± 0.63 MJ/day, respectively; while mean BMR of girls in the 10, 11, 12 and 13 year age groups were 4.96 ± 0.63 MJ/day, 4.85 ± 0.63 MJ/day, 5.05 ± 0.55 MJ/day and 4.94 ± 0.51 MJ/day, respectively. Comparison of measured BMR with BMR values predicted from the FAO/WHO/UNU (1985) equations shows that the predictive equations overestimated the BMR of Malaysian boys by 3% and that of girls by 5%. The Henry and Rees (1991) equations for populations in the tropics underestimated BMR of boys and girls by 1% and 2%, respectively. Linear regression equations to predict BMR based on body weight were derived according to sex and age groups. It is recommended that these predictive equations be used for the estimation of BMR of Malaysian adolescents.
  8. Noor MI, Poh BK, Zawiah H, Henry CJ
    Forum Nutr, 2003;56:250-3.
    PMID: 15806886
    The energy and nutritional requirements of adolescents are influenced primarily by the growth spurt that occurs at puberty, and also by the need to maintain adequate levels of physical activity. Predictions of BMR have gained attention since the publication of the FAO/WHO/UNU (1985) expert consultation report, which adopted the principle of relying on energy expenditure rather than energy intake to derive requirement of individuals. While the report predicts BMR accurately in many individuals from temperate climate, they are said to be less accurate in predicting BMR in populations living in the tropics. The collation of worldwide data on basal metabolism indicated that, relative to adults, there was a paucity of data in other age groups including the adolescents. Although several BMR studies among children had been reported in the 90's, the data in normal weight children are almost exclusively from small control groups in obesity studies. Furthermore, we know little as to whether BMR of children differs in differing climatic conditions. This paper presents predictive equations for estimating BMR from a two-centre study, Bangi (Malaysia) and Oxford (UK) and to compare the results with the currently used predictive equations.
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