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Uses and limitations of the balance technique.

Classical balance techniques are a powerful, sensitive, and usually accurate technique for assessing the nutritional or metabolic response to changes in nutritional intake or to metabolic or physiological perturbations. Balances are particularly sensitive for examining transient or short-term responses to nutritional or metabolic stimuli. A major factor responsible for the precision and sensitivity of this technique is the precise control of the activities and environment of an individual during a classical metabolic balance study (eg, the carefully defined dietary intake, degree of exercise, and environmental temperature to prevent sweating); these same factors may enhance the precision and sensitivity of other metabolic or nutritional investigations that may be carried out concurrently with a balance study. Finally, for nitrogen balance studies, the measurement of nitrogen (eg, by the Kjeldahl technique) can be very accurate and sensitive. Despite these advantages, there are important limitations and errors that are inherent in the balance technique. The errors tend to overestimate intake and underestimate output, thereby leading to erroneously positive balances. These errors include losses of food on cooking and eating utensils and dishware, losses of feces or urine on toilet paper or in collection containers, and losses through sweat, exfoliated skin, hair and nail growth, saliva, menses, blood sampling, toothbrushing, semen, and, for nitrogen, from flatus and respiration. Cumulative balance measurements are particularly likely to be falsely positive. The magnitude of unmeasured losses vary among healthy individuals, with the magnitude of the nitrogen intake (for nitrogen), in altered environmental conditions (eg, with sweating), and possibly in disease states. Balance studies are also expensive and time consuming.(ABSTRACT TRUNCATED AT 250 WORDS)

Body Weight

Training correct utensil use in retarded children: modeling vs. physical guidance.

Modeling and physical guidance were compared for teaching 24 retarded males (mean age = 13.5, mean IQ = 25.3) to use a knife, fork, and spoon. Initial premeal training methods resulted in no improvement over baseline. The methods were revised to extend throughout meals, and a third method (physical guidance with praise) replaced a former control procedure. Methods involving physical guidance produced significant improvement while modeling did not. All groups then received physical guidance with praise which resulted in their achieving similar levels of performance. Follow-up observations revealed that correct utensil use continued under maintenance conditions.

Adolescent

[Effects of sodium chloride, acetic acid and citric acid on the dissolution of aluminum from aluminum cooking utensils].

In order to investigate the effects of sodium chloride and organic acids on aluminum elution from cooking utensils made of aluminum, the quantities of aluminum elution were measured in solutions with various concentrations of sodium chloride, acetic acid and citric acid by flameless atomic adsorption spectrophotometry. The increase of the aluminum elution rate from a pudding cup, an aluminum pan and an alumite pan could be clearly distinguished by the coexistence of acetic acid or citric acid and sodium chloride. The elution was low in the presence of sodium chloride at room temperature, but it was distinctly accelerated by heating. Although alumite treatment had the effect of protection against aluminum elution, such elution obviously increased, as shown by the existence of acid and sodium chloride at high temperatures. Aluminum elution rates from surface-untreated cooking utensils made of aluminum were increased by heating by a factor of several thousand.

Acetates

Influence of medicinal herbs decocted with different utensils on colony formation of gastric carcinoma cells.

In order to elucidate the different results obtained in cancer patients with similar condition and symptoms treated by the same medicinal herbs, an investigation of the utensils used for making decoctions was carried out. It was found that the decoction made by means of glassware, enamel and earthenware pots had the best effect of inhibiting the colony formation of human gastric carcinoma cells, the next were the decoctions made by means of unrefined iron pots, stainless steel pots and copper pots, and the worst was that made with aluminium pots. It was also found that there was no difference between the water contained in those utensils and normal saline in the influence on the colony formation of human gastric carcinoma cells. Therefore, it is believed that the difference in effect of the decoctions made by means of different kinds of utensils is not due to the trace dissolution of the utensil materials, but is most likely due to the occurrence of some chemical reactions while making the decoction. That the decoctions made by means of different utensils had different peak values in the absorption spectrum also supports this proposition.

Cooking and Eating Utensils