4.4 Article

Physical and structural characteristics of starch-based and conventional cookies: Water sorption, mechanical glass transition, and texture properties of their crust and crumb

期刊

JOURNAL OF TEXTURE STUDIES
卷 52, 期 3, 页码 347-357

出版社

WILEY
DOI: 10.1111/jtxs.12585

关键词

crumb; crust; mechanical glass transition; starch‐ based cookie; X‐ ray CT

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The physical properties and texture analysis of starch-based cookies were compared with conventional cookies, showing that the former had higher porosity and lower glass-transition temperature. However, the starch-based cookies had lower fracture force, distance, and energy in texture analysis than conventional cookies. These differences were attributed to the undeveloped gluten and fat contents in the starch-based cookies.
The physical properties of starch-based cookie (gluten free and low fat) were compared with those of conventional cookie in consideration for the difference between crust and crumb parts. The internal porosity of the samples was measured by X-ray computed tomography. The starch-based cookie had a higher porosity (0.61) than the conventional cookie (0.42). The mechanical glass-transition temperature (T-g) of the samples was evaluated by the thermal rheological analysis. The anhydrous mechanical T-g of the starch-based cookie was much lower than that of the conventional cookie. The T-g-depression of the starch-based cookie induced by water sorption was more gradual than that of the conventional cookie. For both types of cookie, the crust components were more resistant to water plasticizing than crumb components because of the difference of the equilibrium water contents at each water activity. For the texture analysis of crust components, the whole samples were fractured. The starch-based cookie had a lower fracture force, distance, and energy than the conventional cookie at each water activity point. For the texture analysis of crumb components, a portion of the crust was removed from the whole samples, and the exposed crumb was compressed by a plunger. From the texture profile, a normalized linear length was evaluated. The normalized linear length for the starch-based cookie was higher than that for the conventional cookie. These results were corresponded to the differences in the undeveloped gluten and fat contents.

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