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Effects of different cooking methods on the proximate composition and physical properties of Brown shrimp (Metapenaeus dobsonii) during cooking and freezing cycle

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Title Effects of different cooking methods on the proximate composition and physical properties of Brown shrimp (Metapenaeus dobsonii) during cooking and freezing cycle
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Creator Sumit Kumar Verma
Ganesan, P.
Pankaj Kishore
Remya, S.
Mohan, C. O.
Pandurengan Padmavathy
Nagarajan Muralidhran
Bindu, J.
 
Subject Not Available
 
Description Not Available
Present study aimed to evaluate the changes in proximate composition and physical attributes in brown shrimp (Metapenaeus dobsonii) exposed to different methods of cooking followed by freezing. For this, three different grades (100/200, 200/300, and 300/500 numbers per kg) of brown shrimp were cooked at 90°C till the core temperature of the product reaches 85°C using hot water, steam, and microwave (400W) techniques. The changes in yield, cooking loss, proximate composition, textural, and colour profile were assessed for cooked shrimps. The cooking loss was higher for larger grades of shrimp, whereas shrimp cooked using hot water exhibited the highest cooking loss. Lowest cooking loss was observed for microwave-cooked shrimp. Moisture content decreased after cooking whereas protein, fat, ash, and calorie content increased. After cooking, different grades of shrimp showed an increase in their lightness (L*), redness (a*), and yellowness (b*) values. The smaller grade shrimp exhibited lower value for cohesiveness, hardness, chewiness, and gumminess. Different cooking techniques yielded cooked shrimp of varying hardness values.
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Date 2023-10-25T16:55:01Z
2023-10-25T16:55:01Z
2023-04-11
 
Type Research Paper
 
Identifier Sumit Kumar Verma, Ganesan, P., Pankaj Kishore, Remya, S., Mohan, C. O., Pandurengan Padmavathy, Nagarajan Muralidhran and Bindu, J. (2023) Effects of different cooking methods on the proximate composition and physical properties of Brown shrimp (Metapenaeus dobsonii) during cooking and freezing cycle. Food Science & Technology International. DOI: 10.1177/10820132231166972
1082-0132
http://krishi.icar.gov.in/jspui/handle/123456789/80827
 
Language English
 
Relation Not Available;
 
Publisher SAGE Publications