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Use of a food composition database to estimate daily dietary intake of nutrient or trace elements in Japan, with reference to its limitation

 

作者: Shinichiro Shimbo,   Akiko Hayase,   Mika Murakami,   Ikuno Hatai,   Kae Higashikawa,   Chan‐Seok Moon,   Zuo‐Wen Zhang,   Takao Watanabe,   Hiroshi Iguchi,   Masayuki Ikeda,  

 

期刊: Food Additives & Contaminants  (Taylor Available online 1996)
卷期: Volume 13, issue 7  

页码: 775-786

 

ISSN:0265-203X

 

年代: 1996

 

DOI:10.1080/02652039609374465

 

出版商: Taylor & Francis Group

 

关键词: daily dietary intake;food duplicate;Japan;respiratory burden;trace elements

 

数据来源: Taylor

 

摘要:

Daily dietary intake of 28 trace elements (Al, As, B, Ba, Be, Bi, Cd, Co, Cr, Cu, Ga, Ge, Li, Mg, Mn, Mo, Ni, Pb, Sb, Sc, Se, Si, Sn, Sr, Ti, Tl, V and Zn) were estimated from the food intake records (collected by the 24‐h total food duplicate method), taking advantage of recently published trace element composition tables for foods in Japan. Because the number of food items listed in the tables was not sufficient, the calculation was made with not all foods recorded, and the results should be taken as semi‐quantitative. The estimated intake was high (i.e. > 1 mg/day as a median) for Al, Cu, Mg, Mn, Si, Sr and Zn, medium (i.e. 2–985 μg/day) for As, B, Ba, Be, Cr, Ge, Mo, Ni, Sb, Sc, Se, Sn and Ti, and low (i.e. < 1 μg/day) for Cd, Co, Li, Pb and V. Comparison of the present estimates with the reported values in the literature on 15 elements showed that close agreements were observed in the cases of 10 elements (i.e. Al, B, Cr, Cu, Mg, Mn, Mo, Ni, Se and Zn) for which the present estimates are above 1 μg/day, whereas the discrepancies were significant for four elements (i.e. Cd, Co, Pb and V) with < 1 μg/day intake. When the expected dietary uptake was compared with that by respiration in the cases of the 16 elements for which the atmospheric concentration data in Japan are available, the uptake was exclusively attributable to the dietary route for all 16 elements with the possible exception of vanadium.

 

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