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4篇 您的检索式:作者名="TASHIRO Yuri"
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1The Relationships between Rheological Properties and Structural Changes of Chilled Abalone Meat显示文摘The quantitative correlation between theological properties and structural characteristic values of chilled abalone meat was studied. Structural changes were observed, and these values were enumerated using image processing and analysis technique. Structural changes in the myofibrils and collagen fibrils were the greatest in chilling for 24 h. After chilling for 48 h, similar structures of vertical and cross sections were observed. For chilling from 0h to 72h, the instantaneous modulus E0 of the both section meat decreases gradually with time, but no significant differences were observed after chilling for 48 h.The relaxation time and viscosity of both sections attained the same values for the same chilling time, but increased gradually with increasing chilling time. Meanwhile, a negative correlation between the structural characteristic values (Dm, Am,Rvm), and rheological properties (E1,τi,η1) clearly exists. Some logarithmic expressions have been obtained for these negative correlations. These results suggest that the difference in rheological properties between the cross and vertical sections was mainly due to the structural changes of myofibrils and collagen fibrils, and rheological properties are influenced quantitatively by the structural characteristic values for chilling from 0 h to 72 h.TASHIRO Yuri OGAWA Hiroo 2003Journal of Ocean University of Qingdao2003,2,2:4
2The isolation of prophyra-334 from marine algae and its UV-absorption behavior显示文摘Prophyra-334 was prepared by methanol extraction and HPLC methods from marine algae (dried laver). It is a sunscreen compound that has good absorption of ultraviolet radiations in the wavelength ranges of 200-400 nm. The absorption maximum wavelength of prophyra-334 is at 334 nm, so defined the name. The mo- lar extinction coefficient (ε) of prophyra-334 in aqueous solution at 334 nm wavelength is 4.23×104. The absorp- tion of prophyra-334 in organic solvents differs in aqueous solutions. In polar organic solvents, the absorption maximum wavelength of prophyra-334 has a slight shift toward longer wavelength compared with that in pure water. On the contrary, in inert non-polar organic solvents, the absorption maximum wavelength and the shape of absorption spectra of prophyra-334 are changed. The effects of organic solvents on prophyra-334 stability sug- gested that: (1) the absorbance of prophyra-334 in water is generally constant at temperature of 60°C in 24 h, meaning that prophyra-334 is quite stable in water; (2) the absorbance of prophyra-334 in ethanol and hexane decreases at the same condition. The stability of prophyra-334 in organic solvents is less than that in aqueous solution. In benzene, the prophyra-334 is very instable.张朝辉 高昕Department of Food Engineering Ocean University of China Qingdao 266003 China Yuri Tashiro Shingo Matsukawa Hiroo Ogawa 2005Chinese Journal of Oceanology and Limnology2005,23,4:1
3Rheological properties and structural changes in raw and cooked abalone meat显示文摘Xin Gao Hiroo Ogawa Yuri Tashiro 2001Fisheries Science2001,67,2:1
4Determination of Selenium in Marine Aquatic Products by Hydride Generation-atomic Fluorescence Spectrometry (HG-AFS)显示文摘A method for the analysis of selenium in marine aquatic products by HG-AFS has been investigated. The methodis based on the reduction of inorganic selenium to volatile SeH2 which is bubbled out by carrier gas of pure argon, and thenswept to Ar-H2 flame quarts atomizer to measure its fluorescence intensity. The hydride generation, transportation, atom-ization and some instrumental parameters were studied by a kind of orthogonal design. The optimum conditions selected areas follows: reactive acidity, 20% HCl; the amount of NaBH4, 4.9mL; gas flow of argon, 600mLmin-1; atomizing tempera-ture, 200 °C; negative high voltage, -300V; light current, 100 mA; integral time, 7s. The detection limit of the presentedmethod is 0.072 μg L-1 for selenium. The calibration curve shows a satisfactory line in the concentration range from 0.000 to1.000 μg L-1 Se. The recovery is 95.8%-102.2% .ZHANG Zhaohui GAO Xin Tashiro Yuri Hiroo Ogawa 2005Journal of Ocean University of China2005,4,3:0
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