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Item type:Publication, Influence of age at slaughter and sex on carcass characteristics, meat quality, fatty acids, and ribonucleotides in white-tailed yellow native chickens(2024-11-01) ;Chaosap, Chanporn ;Sivapirunthep, PanneepaAdeyemi, Kazeem D.This study investigated the effects of age and sex on carcass and meat characteristics of one of Thailand’s major indigenous chicken breeds, the white-tailed yellow native chicken (NC). A total of 120 one-day-old NC (60 males and 60 females) were raised, and harvested at either 16, 20 or 24 weeks. The results showed that body, carcass, breast and fillet weights did not differ (P > 0.05) between 16- and 20-week-old NC, but were lower (P < 0.05) than those of 24-week-old NC. Male NC had higher (P < 0.05) body, carcass, wing, back and thigh weights than female NC. Neither sex nor age affected muscle pH, sarcomere length, redness and yellowness, guanosine monophosphate, and hypoxanthine. The interaction between age and sex was significant (P < 0.05) for %dressing, %leg, L*, C14:1, C18:1n9 and C20:4n6. Shear force was lower in 16-week-old NC (P < 0.05). The 24-week-old NC had lower (P < 0.05) C13:0, C16:0, C18:0, C18:2n6t, C20:4n6, C22:6n-3, intramuscular fat and inosine 5’-monophosphate levels and higher (P < 0.05) C18:2n6c, C18:3n-3 and C20:3n-6 levels than the 16- and 20-week-old NC. Male NC had higher (P < 0.05) C13:0-, C14:0-, C18:2n6t-, C20:3n-6- and lower inosine levels than female NC. In conclusion, these data highlight age- and sex-specific differences in carcass and meat quality of NC and provide relevant information to support consumer-oriented decisions on the production, processing and nutritional value of NC. - Some of the metrics are blocked by yourconsent settings
Item type:Publication, Chemical and fatty acid composition, collagen, calpain and troponin T contents and quality characteristics of five muscle types in native Thai cattle(2024-03-01) ;Chaosap, Chanporn ;Sommart, Kritapon ;Adeyemi, Kazeem D. ;Polyorach, SineenartLukkananukool, AcharaIn this study, chemical composition, fatty acids, collagen solubility, calpains, and troponin T degradation were investigated in various muscles of native Thai cattle (NTC). Five muscles, namely Bicep femoris, Infraspinatus, Longissimus thoracis, Supraspinatus and Semimembranosus were sampled from five Kho Isaan bulls. Moisture content of Longissimus thoracis was lower (p < 0.05) than others. Protein content of Longissimus thoracis, Bicep femoris and Semimembranosus was higher (p < 0.05) than that of Infraspinatus and Supraspinatus. Infraspinatus and Longissimus thoracis had higher fat content (p < 0.05) than Bicep femoris and Semimembranosus. Muscle pH, color, and drip loss did not differ between muscles. Semimembranosus and Supraspinatus showed higher cook loss (p < 0.05) than Infraspinatus and Longissimus thoracis. Infraspinatus had the lowest Warner–Bratzler shear force (p < 0.05). Supraspinatus, Infraspinatus and Bicep femoris had higher (p < 0.05) soluble, insoluble and total collagen content than Semimembranosus and Longissimus thoracis. Infraspinatus had higher collagen solubility than Semimembranosus and Supraspinatus. Collagen content and solubility were not affected by ageing time. The relative band intensities of intact troponin T and its degradation product at 2- and 14-days postmortem were higher in Longissimus thoracis than in other muscles. Infraspinatus and Supraspinatus had significantly higher expression of m-calpain and calpastatin genes than Longissimus thoracis, Bicep femoris, and Semimembranosus. Total fatty acid was higher while the percentage of C22:6n-3 was lower in Infraspinatus and Longissimus thoracis (p < 0.05) than in other muscles. These results show differences in specific nutritional, technological and eating quality characteristics of NTC muscles and thus provide information for optimizing storage and processing conditions for various NTC muscles. - Some of the metrics are blocked by yourconsent settings
Item type:Publication, Effect of postmortem storage on shear force value and calpain/calpastatin activity in longissimus dorsi muscle of rusa deer (cervus timorensis)(2018-08-14) ;Jantasaeng, Orapin ;Jirajaroenrat, KanyaTuntivisoottikul, KunyaThe objective of this study was to determine the effects of aging period on shear force values and activities of calpain/calpastatin enzymes of the longissimus dorsi (LD) muscle from rusa deer (Cervus timorensis). The shear force values were measured with instron materials testing machine. Results showed that postmortem storage influenced meat tenderness with a highly significant reduction of shear force value from 9.01±0.83 kg/cm<sup>2</sup> at day 1 to 4.34±0.10 kg/cm<sup>2</sup> at day 21 (P<0.01). Determination of the enzyme activities indicated that the μ-calpain activity decreased significantly from 1.50±0.42 to 0.19±0.28 units/g of meat (P<0.01), whereas m-calpain activity (22.88±9.64 to 16.95±8.34 units/g of meat) and calpastatin activity (9.93±2.37 to 6.82±2.96 units/g of meat) slightly decreased (P>0.05). Shear force values were significant correlated with higher levels of μ-calpain (r=0.915) and m-calpain (r=0.758), respectively. However, the values were not significant related to the calpastatin activity (r=0.462). Therefore, this study confirmed that in the case of rusa deer, μ-calpain is a key factor controlling postmortem meat tenderness compared to m-calpain and calpastatin. The results suggested that storage of the rusa deer meat for 7 days is enough to achieve aging of the LD muscle, which may help to reduce the cost of meat production. - Some of the metrics are blocked by yourconsent settings
Item type:Publication, Finite element analysis of dental implant prosthetics(2018-01-01) ;Aumnakmanee, Suchat ;Yodpiji, Nantakrit ;Jantong, NattawutJongprasithporn, ManutchanokThe paper presents the engineering analysis on stress characteristics of dental implant prosthetics. This research project focuses on a static simulation for dental implant using the three-dimensional finite element. Effects of four different Thread designs (Buttress Thread - US20140370459A1, Trapezoidal Thread - US20140212844A1, Reverse Buttress Thread - US20140816800A1 and a New Design) of dental implant prosthetics on stress are tested at four different areas (Abutment, Implant, Cortical Bone, and Cancellous Bone). Compressive forces, ranging from 60 to 200 N and Sheer force of 20 N with the force angle of 60°are applied to the dental implant models. Outcomes from this research project provide a better understanding of stress distribution characteristics that would be used for an improved design of dental implant Threads.
